Ultrasonic Water Level Sensor refers to the ultrasonic level sensor used to measure the water level. Used for industrial liquid tanks, or river water level non-contact monitoring and control.
Ultrasonic Water Level Sensor is also often called “Ultrasonic Level Sensor”, “Ultrasonic Level Detector”, “Ultrasonic Level Sensor 4-20ma” or “Ultrasonic Level Transmitter” “Ultrasonic liquid level sensor”
The flexible design of the ultrasonic liquid level sensor can be applied to integrated systems or replace float switches, conductivity switches and static pressure sensors;
It is suitable for the comprehensive application of fluid control and chemical supply system;
Widely used in various atmospheric storage tanks, process tanks, small tanks and small containers, pump lifting stations, waste water storage tanks.
Ultrasonic signal has strong penetrating power and sensitive response, which is a reliable helper for your liquid level measurement.
Clean water level measurement
The demand for water level measurement of rivers and lakes and road area is very common.
The liquid level data must not only be reliable, but also be able to upload the data online to facilitate real-time monitoring.
Ultrasound can be equipped with 485 function, which will effectively meet your needs.
Corrosive level measurement
In acid-base level measurement, not only the liquid is corroded, but also the chemical reaction will generate heat, which will interfere with the level measurement.
Ultrasonic can be customized for anti-corrosion, helping you to reliably realize automatic dosing ratio.
Particle level measurement
Particle level measurement is easy to produce false signals, which requires the level gauge to filter clutter.
The ultrasonic level gauge has an intelligent algorithm to automatically remove false echoes, and is used for level measurement of tanks and other materials. It is accurate and reliable!
Ultrasonic transducer (probe) emits high-frequency pulse sound waves, and the surface of the measured level (material) is reflected back. The reflected echo is received by the transducer and converted into an electrical signal. The propagation time of the sound wave is proportional to the distance from the sound wave to the surface of the object.
The relationship between the sound wave transmission distance S and the sound speed C and the sound transmission time T can be expressed by the formula: S=C×T/2.
The probe part emits ultrasonic waves, which are then reflected by the liquid surface. The probe part is received again. The distance from the probe to the liquid (object) surface is proportional to the elapsed time of the ultrasonic wave:
hb = CT2
Distance [m] = time × speed of sound/2 [m]
The temperature compensation formula of sound velocity: Ambient sound velocity = 331.5 + 0.6 × temperature
Ultrasonic Level Sensor Advantages and Disadvantages
The Advantages of ultrasonic liquid level gauge are very outstanding. It is mainly reflected in the following aspects:
The structure is simple. The reading is convenient. It is very easy to install and maintain.
Safe and clean. The instrument has long service life. The measurement is stable and reliable with high precision.
Adopt non-contact measurement. It is not easily affected by the viscosity and density of the liquid.
Simple installation and operation
No moving parts
Continuous water level detection
Can be used some non-liquid materials/media
High accuracy & sensitivity
Of course, the ultrasonic liquid level gauge also has its own limitations and insurmountable defects. Specifically, Disadvantages is mainly manifested in:
Ultrasonic liquid level sensor is greatly affected by dust.
Can ultrasonic sensor detect water level?
Yes. Ultrasonic sensors can be used for water level measurement. And, most of the time, ultrasonic water level sensor is a common choice for water level measurement sensors.
How does ultrasonic water level sensor work?
The ultrasonic level sensor adopts the ultrasonic pulse echo method to achieve liquid level measurement. Specifically, the transducer (probe) of the ultrasonic level gauge emits high-frequency ultrasonic pulses. When it encounters the surface of the liquid level to be measured, the sound wave is reflected back, and part of the reflected echo is received by the transducer (probe) and converted into With electrical signals, users can know the water level almost in real time based on the reflected signals.
Which sensor is used in water level indicator?
There are 7 main types of level transmitters that Sino-Inst offers for water level indicate. Each type of transmitter works in a different way, and makes it useful for different types of processes.
The External Ultrasonic Tank Level Sensor adopts the sonar echo ranging principle. It overcomes the influence of the tank wall on the transmission of ultrasonic signals. It adopts advanced digital signal processing technology. It can truly realize the non-contact, high-precision measurement of the liquid level in the tank.
Liquid level controller refers to the control of high and low liquid levels through mechanical or electronic methods. It Can control solenoid valves, water pumps, etc. So as to achieve semi-automation or full automation. There are many methods, depending on the choice of different products.
The specific ultrasonic water level sensor price needs to be selected and quoted according to your measurement parameters. Please contact Sino-Inst sales engineer!
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Sino-Inst is a manufacturer of Ultrasonic Water Level Sensors.
Sino-Inst offers over 20 Ultrasonic Water Level Sensors at best price. About 50% of these are Pressure level Transducer, 40% are Differential Pressure transmitters, and 40% are Ultrasonic Water Level transmitters. A wide variety of Ultrasonic Water Level Sensors options are available to you, such as free samples, paid samples.
Sino-Inst is a globally recognized supplier and manufacturer of Ultrasonic Water Level Sensors, located in China. Sino-Inst sells through a mature distribution network that reaches all 50 states and 30 countries worldwide. Ultrasonic Water Level Sensors products are most popular in Domestic Market, Southeast Asia, and Mid East.
You can ensure product safety by selecting from certified suppliers, with ISO9001, ISO14001 certification.
Wu Peng, born in 1980, is a highly respected and accomplished male engineer with extensive experience in the field of automation. With over 20 years of industry experience, Wu has made significant contributions to both academia and engineering projects.
Throughout his career, Wu Peng has participated in numerous national and international engineering projects. Some of his most notable projects include the development of an intelligent control system for oil refineries, the design of a cutting-edge distributed control system for petrochemical plants, and the optimization of control algorithms for natural gas pipelines.
Float level switch, Float level sensor and Float level controller are commonly used liquid level monitoring instruments.
Users are consulting on float level timing, and often confuse it with float level switches and float level gauge controllers. But because they are not the same product, their functions and prices are quite different. So, what are the differences between the float level gauge, the float level switch and the float level controller?
Generally speaking, the main differences between float level gauge, float level switch and float level controller are as follows:
Float level gauges are generally straight rod type. A maglev ball is placed on the straight rod, and the reed switch in the straight rod can be attracted by moving the maglev ball up and down. The purpose of increasing the resistance value in series is achieved by attracting the reed switch. Because the output 4-20mA remote signal is a current signal, under the condition of a certain voltage, the current is proportional to the resistance. The greater the resistance, the greater the current. Therefore, there is a series circuit board circuit inside the straight rod of the float level gauge.
The reed switch is directly placed inside the float level controller, without the need to design a circuit board separately.
The structure of the float level switch is the simplest.
Because the structure of the float level gauge is more complicated, its price is relatively high. The price of float level controller is second, and the price of float level switch is the cheapest.
Float Level Gauge A level gauge that can measure liquid level values. The float level controller cannot display the specific level value. Only one switch value alarm point signal is given.
The float level switch is especially suitable for use in small tanks, but you need to open the hole at the height you need. Then install one end of the float at the position where the alarm is needed. When the liquid level reaches the position, the floating ball will be lifted up and the contact point will be automatically disconnected to act as an alarm.
The customer consults the float level gauge, and the salesperson asks for detailed parameters. The customer just said that it needs 8 on-off alarm points with a measuring length of 5 meters, and nothing else. Our sales staff made a quotation based on this parameter.
After the quotation. Suddenly, the customer asked for a 4-20mA remote signal with a secondary display meter. In this way, the price of the second quotation more than doubled. Customers began to question the price.
Customers think this is the same product. Why does one more parameter make people feel that they are completely two products? This requires customers to clearly understand the specific differences between the float level gauge, the float level controller, and the float level switch.
The float level gauge is used as a level gauge that can measure the liquid level value. Float level gauges are generally straight rod type. A maglev ball is set on the straight rod. Move the maglev ball up and down to attract the reed switch in the straight rod. The purpose of increasing the resistance value in series is achieved by attracting the reed switch.
Because the output 4-20mA remote signal is a current signal. In the case of a certain voltage, current and resistance are proportional. The greater the resistance, the greater the current. Therefore, the float level gauge has a series circuit board circuit inside the straight rod, so the price is relatively high.
And if there is no need to display the specific level value, then there is no need to output a 4-20mA signal to the secondary instrument in the straight rod of the float level gauge. It only needs to be able to give a switch alarm point signal. Then the reed switch can be placed directly inside the float level gauge, without the need to design the circuit board separately. This way the price will be different. Of course, the name becomes the float level controller. So the price is different.
Many customers will also say that it is the float level gauge that they are looking for when they buy it. In fact, to be more precise, this cannot be called a float level gauge. Because it no longer has the function of measuring liquid level value.
The float level switch is simpler than this, and the structure is simpler. Especially suitable for use in small tanks. The float level switch needs to make a hole at the required height by itself, and then install the float at the position where the alarm is needed. When the liquid level reaches the position, the floating ball will be lifted up and the contact point will be automatically disconnected to act as an alarm.
The float level switch is a simple-structured medium level measurement, using a level controller that is easy to install. Because the installation has no complicated circuits, the operation is not affected. The user only needs to select the correct material when selecting the model. It is suitable for measuring liquid, pressure or temperature in any environment.
Liquid level switches are widely used in industrial equipment, agricultural equipment, and household appliances. The main structure of the float liquid level switch is composed of a magnetic reed switch and a float. The float has magnetic materials. When the float moves up and down with the measured liquid level, the magnetic reed switch is touched to detect the liquid level position.
Float level meter is an instrument for measuring liquid level. It is widely used in the field of liquid measurement. Many industries will choose to use it for measurement equipment. Such as the petroleum, chemical, and pharmaceutical industries.
Float level sensor: Float level sensor is designed and produced based on the principle of buoyancy and static magnetic field. The position of a floating ball with a magnet (floating ball for short) in the measured medium is affected by buoyancy.
The change of the liquid level causes the position of the magnetic float to change. The role of the magnet and sensor (reed switch) in the floating ball changes the number of components (such as fixed resistance) connected in series to the circuit. Thereby changing the electrical quantity of the instrument circuit system. That is, changes in the position of the magnetic float cause changes in the electrical quantity. The change of the electrical quantity is detected to reflect the liquid level in the container.
The float level sensor is installed on the top of the container through a connection flange. The float ball floats on the liquid surface according to the principle of discharging the liquid volume phase and so on.
When the liquid level of the container changes, the float ball also moves up and down. The reed switch of the ball level gauge is magnetically attracted to change the position of the liquid level into an electrical signal. The actual position of the liquid is displayed digitally by the display instrument. The floating ball level gauge can achieve long-range detection and control of the liquid level.
When the high liquid level is reached, the high liquid level switch is closed to control the water pump to stop.
Different float level switches are different, some are normally open and some are normally closed. Just pay attention when wiring.
The principle of the float switch is as follows:
Liquids have buoyancy, and the float system (generally with corresponding auxiliary equipment) is made according to the buoyancy of the liquid.
When the liquid level rises, the float system rises accordingly, and similarly when the liquid level falls, it also drops accordingly.
When it rises or falls to the set position, the float system will hit the limit switch (or other microelectronic equipment) in the set position.
So that the travel switch sends out an electric signal, and the electric control device will act immediately when receiving the electric signal, cut off or connect the power supply, forming an automatic control system.
It is basically a reed switch structure, with a movable float on the outside and a magnet inside the ball. When the magnet gets close to the reed pipe by buoyancy, the contacts in the reed pipe are turned on or off.
The principle of the reed switch is to repel the same magnetic poles and attract different magnetic poles.
The switch of the reed switch in the liquid level switch controls the corresponding operating mechanism to form a complete set of circuits. Such as: liquid level display, automatic liquid filling, liquid full alarm and so on.
Sino-Inst offers over 10 Float level switches and transmitters for level measurement. About 50% of these are float liquid level meters, 40% is the level switches.
A wide variety of Float level switches and sensors options are available to you, such as free samples, paid samples.
Sino-Inst is a globally recognized supplier and manufacturer of Float level switches and sensors instrumentation, located in China.
Wu Peng, born in 1980, is a highly respected and accomplished male engineer with extensive experience in the field of automation. With over 20 years of industry experience, Wu has made significant contributions to both academia and engineering projects.
Throughout his career, Wu Peng has participated in numerous national and international engineering projects. Some of his most notable projects include the development of an intelligent control system for oil refineries, the design of a cutting-edge distributed control system for petrochemical plants, and the optimization of control algorithms for natural gas pipelines.
The Non Contact Liquid Level Sensor is not in contact with the measured medium. The Non Contact Liquid Level Sensors provided by Sino-Inst is not Gravity Non-contact Liquid Level Sensors. It is the liquid level sensor used in industrial tanks, reservoirs, and open channels. There are mainly ultrasonic level sensors and radar level sensors.
In the automated production process, in order to ensure the consistency of product quality, the time when the production process is directly monitored and intervened by humans has gone.
Liquid level measurement and monitoring play an increasingly important role. It can be said that liquid level measurement and monitoring It directly affect the quality of the product and even whether the production process can proceed smoothly.
Contact measurement A measuring method in which the sensing element of a measuring tool or measuring instrument obtains measurement information through direct contact with the measured surface.
Non-contact measurement Non-contact measurement is based on photoelectric, electromagnetic, and other technologies. Without touching the surface of the object to be measured, a measurement method to obtain information on the surface parameters of the object.
Ultrasonic transducer (probe) emits high-frequency pulse sound waves, and the surface of the measured level (material) is reflected back. The reflected echo is received by the transducer and converted into an electrical signal. The propagation time of the sound wave is proportional to the distance from the sound wave to the surface of the object.
The relationship between the sound wave transmission distance S and the sound speed C and the sound transmission time T can be expressed by the formula: S=C×T/2.
The probe part emits ultrasonic waves, which are then reflected by the liquid surface. The probe part is received again. The distance from the probe to the liquid (object) surface is proportional to the elapsed time of the ultrasonic wave: hb = CT2 Distance [m] = time × speed of sound/2 [m] The temperature compensation formula of sound velocity: Ambient sound velocity = 331.5 + 0.6 × temperature
Very short microwave pulses with very low energy are transmitted and received through the antenna system. The radar wave runs at the speed of light. The operating time can be converted into level signals by electronic components. A special time extension method can ensure stable and accurate measurement in a very short time.
Electromagnetic waves propagate in the air at the speed of light. The distance between the radar level gauge and the surface of the material can be expressed by the following formula:
D = (1/2)*CT
In the formula: D ———the distance between the radar level gauge and the surface of the material; C ———Speed of light; T ———Pulse time.
Then the liquid level is: L = E-D
In the formula: L — liquid level; E ———The total height of the tank; D ———Air height.
Even in the presence of false reflections, the new micro-processing technology and the unique ECHOFOX- software can accurately analyze the level echo. By inputting the size of the container, the distance value can be converted into a signal proportional to the level. The instrument can be debugged with empty positions.
Ultrasonic liquid level sensors realize the non-contact continuous detection of liquid level.
Ultrasonic liquid level sensors echo sounding sensors for measuring liquid level. And converting it to an electrical signal to send to other instrumentation. Ultrasonic Level Transmitters & Ultrasonic Level Sensors can be used for Non-intrusive level detection of sealed tanks. It can be used for liquid level detection of unsealed tanks and open channels such as rivers.
Liquid Level Gauge also called Liquid level indicator. Liquid Level Gauge has contact and non-contact type. Here mainly discusses the non-contact Liquid Level Gauge, which is used for CO2 cylinder level measurement.
Portable co2 bottle liquid level gauge uses ultrasonic non-contact measurement technology. Detect and display the presence or absence of the Co2 cylinder liquid level. The Digital portable liquid level gauges are designed to offer a simple, accurate, rapid and reliable method. Determining the liquid level of high or low pressure CO2, Halon, FM200, Propane, Novec 1230 and any liquefied gas under pressure. No need to move or weigh the cylinders.
Ultrasonic Level Switch, External Mounted (referred to as “external level switch”) is a new type of level measurement alarm device. Ultrasonic Level Switch is mainly used to detect the liquid level of the storage tank. It can realize the upper and lower limit alarm or monitor whether there is liquid in the pipeline (dry protection). The material of the storage tank can be various metals, non-metals or non-foamed plastics. The wall thickness can be Up to 70mm.
Ultrasonic Level Switch is not affected by factors such as medium density, dielectric constant, conductivity, reflection coefficient, pressure, temperature, precipitation, etc. It is suitable for various liquid levels in the pharmaceutical, petroleum, chemical, electric power, food and other industries Engineering control. Ultrasonic Level Switch is the ideal choice for the detection of toxic, highly corrosive, and dangerous liquid level.
Ultrasonic Non-contact Liquid Level Controller
The Liquid Level Controller is attached to the outside of the tank. Non-contact detection of tank liquid level. Liquid Level Controller supports liquid level alarm, fault alarm, and 485, Modbus, 4-20mA, FoundationFieldBus, PROFIBUS or Hart.
Liquid Level Controller is installed outside the tank. The HS-ULC-Pro Liquid Level Controller works based on the principle of ultrasonic waves, and is also called “externally attached liquid level switch. It is mainly used to detect the liquid level of the storage tank, and its sensor (digital probe) acts on the outer wall of the storage tank. It supports upper and lower limit alarms, tanks Body temperature display or monitor whether there is liquid in the pipeline. Liquid Level Controller is suitable for liquid level process control in the pharmaceutical, petroleum, chemical, electric power and other industries. For the monitoring of toxic, highly corrosive and dangerous liquids, HS-ULC-Pro Ultrasonic Non-contact Liquid Level Controller is an ideal choice.
All of the above are Non Contact Liquid Level measurement techniques. If you need to contact the medium to measure, you can consider using Liquid level float switches & sensors.
The representative products of non-contact liquid level measuring instruments are ultrasonic level meters and intelligent radar level meters. The working principle is to calculate the distance between the sensor and the measured object through the time of transmitting the signal and receiving the signal. Since the propagation speed in the air is constant, the distance between the liquid level sensor and the bottom of the container is constant, and the liquid level of the measured object can be known.
The non-contact level sensor means that the level can be detected without contacting the liquid. Under this advantage, the application field of the non-contact liquid level sensor has been greatly expanded.
Ultrasonic technology is not only used to measure level, but also can be used to measure depth.
The sensor that can measure the liquid level is the liquid level sensor. There are many kinds of common liquid level sensors. For example: float level sensor, hydrostatic level sensor, ultrasonic level sensor, radar level sensor, etc.
For example, a commonly used water level sensor: Liquid level sensor (hydrostatic level gauge/liquid level transmitter/liquid level sensor/water level sensor) is a pressure sensor that measures liquid level. The hydrostatic submersion type liquid level transmitter (liquid level gauge) is based on the principle that the static pressure of the measured liquid is proportional to the height of the liquid. The isolated diffused silicon sensitive element or ceramic capacitive pressure sensitive sensor is used. Convert static pressure to electrical signal. After temperature compensation and linear correction, it is converted into a standard electrical signal (usually 4~20mA/1~5VDC).
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Sino-Inst offers over 20 Non Contact Liquid Level Sensors and transmitters for level measurement. About 50% of these are ultrasonic liquid level meters, 40% is the level switches.
A wide variety of Non Contact Liquid Level Sensors and transmitters options are available to you, such as free samples, paid samples.
Sino-Inst is a globally recognized supplier and manufacturer of Non Contact Liquid Level Sensors and transmitters instrumentation, located in China.
Wu Peng, born in 1980, is a highly respected and accomplished male engineer with extensive experience in the field of automation. With over 20 years of industry experience, Wu has made significant contributions to both academia and engineering projects.
Throughout his career, Wu Peng has participated in numerous national and international engineering projects. Some of his most notable projects include the development of an intelligent control system for oil refineries, the design of a cutting-edge distributed control system for petrochemical plants, and the optimization of control algorithms for natural gas pipelines.
Ultrasonic liquid level sensors realize the non-contact continuous detection of liquid level.
Ultrasonic liquid level sensors echo sounding sensors for measuring liquid level. And converting it to an electrical signal to send to other instrumentation. Ultrasonic Level Transmitters & Ultrasonic Level Sensors can be used for Non-intrusive level detection of sealed tanks. It can be used for liquid level detection of unsealed tanks and open channels such as rivers.
Portable Ultrasonic Liquid Level Indicator allows you to conveniently detect the level of liquid available in a container /cylinder/pipe/tank. Ultrasonic principle, Non-contact.
Ultrasonic level sensor can adopt two-wire, three-wire or four-wire technology.
The two-wire system is: power supply and signal output are shared. The three-wire system is: the power supply circuit and the signal output circuit are independent. When using DC 24v power supply, a 3-core cable can be used, and the negative terminal of the power supply and the negative terminal of the signal output share a core wire. The four-wire system is: when using AC 220v power supply, or when using DC 24v power supply, when the power supply circuit and the signal output circuit are required to be completely isolated, a 4-core cable should be used. DC or AC power supply, 4~20mADC, high and low switch output.
Ultrasonic transducer (probe) emits high-frequency pulse sound waves, and the surface of the measured level (material) is reflected back. The reflected echo is received by the transducer and converted into an electrical signal. The propagation time of the sound wave is proportional to the distance from the sound wave to the surface of the object.
The relationship between the sound wave transmission distance S and the sound speed C and the sound transmission time T can be expressed by the formula: S=C×T/2.
The probe part emits ultrasonic waves, which are then reflected by the liquid surface. The probe part is received again. The distance from the probe to the liquid (object) surface is proportional to the elapsed time of the ultrasonic wave: hb = CT2 Distance [m] = time × speed of sound/2 [m] The temperature compensation formula of sound velocity: Ambient sound velocity = 331.5 + 0.6 × temperature
Liquid level sensor is a kind of measuring instrument used to measure the change of liquid level in the container. It can display the change of liquid level intuitively and linearly. Among them, the magnetic float level sensor is a kind of one that can display on-site and output analog signals. Kind of level gauge.
There are many types of level gauges. There are intuitive displays such as: glass plate level gauges, glass tube level gauges, etc. There are also magnetic float level gauges, float level gauges, radar level gauges, ultrasonic level gauges, Level gauges with electronic signals such as radio frequency admittance level gauges.
Ultrasonic level gauge is a sensor that emits ultrasonic waves. The sound waves are reflected by the liquid surface and then received by the same sensor. They are converted into electrical signals by piezoelectric crystals or magnetostrictive devices. The time between the transmission and reception of the sound waves is calculated to calculate the sensor The distance to the surface of the liquid being measured.
Very short microwave pulses with very low energy emitted by the radar level gauge are transmitted and received through the antenna system. Radar waves travel at the speed of light. The running time can be converted into a level signal by electronic components.
The radar level gauge is more accurate than the ultrasonic level. And the ultrasonic level gauge is not accurate when measuring the liquid level that produces the foam. Because the ultrasonic wave is reflected back when it hits the foam, the measured level is higher than the actual level. So The radar level gauge is used for the liquid level that is prone to foam. The microwave used by the radar level gauge can pass through foam. So it can also be used for level measurement of liquids that are prone to foam.
The working principle of the ultrasonic level gauge is that the ultrasonic transducer (probe) emits high-frequency pulsed sound waves. When encountering the surface of the measured material (material), it is reflected and folded back, and the reflected echo is received by the transducer and converted into an electrical signal. The propagation time of a sound wave is proportional to the distance from the sound wave to the surface of the object.
The relationship between the sound wave transmission distance S, the sound speed C and the sound transmission time T can be expressed by the formula: S=C×T/2.
Ultrasonic sensors are also ultrasonic transducers, that is, probes.
Ultrasonic sensors are mainly composed of piezoelectric wafers. It can both transmit and receive ultrasonic waves. Low-power ultrasonic probes are mostly used for detection. It has many different structures, which can be divided into straight probe (longitudinal wave), oblique probe (transverse wave), surface wave probe (surface wave), Lamb wave probe (Lamb wave), dual probe (one probe reflection, one probe reception) Wait.
Ultrasonic transmitter refers to an instrument that can convert liquid level detection signals into analog signals or other signals. For example, we can require the ultrasonic level transmitter to output a 4-20mA signal.
4-20mA is the common output signal of ultrasonic level gauge. To be precise, it can be divided into 2-wire, 3-wire, and 4-wire.
Two-wire system: The two-wire ultrasonic level meter shares a loop for power supply (DC24V only) and signal output (DC4-20mA). Only two wires are used and it is the standard transmitter form. The downside is that the transmit power is weak. Not suitable for liquid level measurement with large fluctuations. When the liquid level has a large volatilization. Measurements are also not ideal.
Three-wire system: The three-wire ultrasonic level gauge is actually a four-wire system. Its power supply (only DC24V) is separated from the signal output (DC4-20mA) loop. Use two lines each. When their negative terminals are connected in common, three wires are usually sufficient. The advantage is that the transmit power is larger. Suitable for liquid level and material level measurement in a variety of conditions. The effect is better.
Four-wire system: The power supply (DC24V or AC220V) is separated from the signal output (DC4-20mA) loop. The advantage of using two wires each is that the transmit power is greater. At the same time, it provides high and low relay output, adding new functions.
In theory, ultrasonic liquid level sensors can be used to detect solid material levels. However, the general range should be reduced. The particles are uniform and the thickness is moderate. For example, corn, sand, detection is still very good. But the range is almost halved. If the particles are too fine, such as flour, cement powder will not work well.
Some ultrasonic level gauges can detect solids and liquids. For example, VEGA’s ultrasonic level meter does not distinguish between solid and liquid models.
And some brands of ultrasonic level gauges can only measure liquids, such as Siemens ultrasonic level gauges. It distinguishes the models that measure liquids and the models that measure solids. There are also models that can measure solid liquids.
Non Invasive Level Measurement means that the liquid level sensor is attached to the outside of the tank to detect the liquid level. In this way, there is no need to perforate the tank. Installation and monitoring are very convenient.
At present, the most commonly used Non Invasive Level Measurement is the ultrasonic sensor.
In addition to the Non Intrusive Level sensors at the top of this article. We also have a Non Intrusive Level Gauge. This externally mounted ultrasonic level sensor is mostly used for truck fuel tank level monitoring. Of course, it can also be used for other tank level monitoring according to the parameters.
Ultrasonic oil level sensor uses the principle of ultrasonic detection to detect the fuel level of the fuel tank. The fuel volume data is transmitted to the background monitoring system to achieve real-time monitoring of vehicle fuel consumption. Ultrasonic oil level sensor is mainly used in the field of Internet of Vehicles to monitor the change of fuel level in the fuel tank in real-time to achieve fuel level detection. It can be used to prevent fuel stealing, optimize operating costs, optimize driver driving behavior, and assist statistical decision-making. At the same time, this product can also be used in chemical, water conservancy, storage tanks, and other fields that require level detection.
Ultrasonic liquid level sensor is a digital liquid level meter controlled by microprocessor. Ultrasonic pulses are emitted by sensors (transducers) during the measurement. The sound waves are picked up by the same sensor after being reflected off the surface of the liquid. Converted into electrical signals by piezoelectric crystals. And the distance between the sensor and the liquid surface to be measured is calculated from the time between the emission and reception of the sound wave. Because of the non-contact measurement. The measured medium is almost unlimited. It can be widely used to measure the height of various liquid and solid materials.
The working principle of the ultrasonic water level sensor is that the ultrasonic transducer (probe) emits high-frequency pulsed sound waves when it encounters the water surface and is reflected and folded back. The reflected echoes are received by the transducer and converted into electrical signals. The propagation time of a sound wave is proportional to the distance from the sound wave to the surface of the water.
Ultrasonic water level sensor is often used for water level monitoring in sewage stations, fire water tanks, reservoirs, etc.
The material level indicator refers to an instrument for real-time detection of changes in the height of solid materials in a container. Material level indicator is also known as material…
Water level control refers to the control of high and low water levels by mechanical or electronic methods. It can control solenoid valves, water pumps, etc. to become an automatic…
Float Switch for Water Tank is a switch that can adjust the liquid level status of water tanks, buckets, pools and other fields. It can also be used to control…
Boiler Drum Level Measurement is very important and necessary in major factories. Drum level is an extremely important control parameter. It is an important guarantee for the production of high-quality…
Wastewater level sensor occupies a large proportion in sewage treatment applications. It is used in almost all aspects of sewage treatment. In sewage treatment, the level of waste water, sludge,…
What Is Radar Type Level Transmitter? The Radar Type Level Transmitter is a kind of instrument that measures the liquid level in the container by microwave. The Radar Type Level…
Water Level Monitoring Sensors can be used to detect changes in water level. The Water Level Monitoring Sensor and other control equipment work together to form the Water Level Monitoring…
Tank level gauges are instruments used to indicate and control the height of the liquid level in the tank. Commonly used in water storage tanks, oil storage tanks, and underground…
Non-contact radar level sensor Radar level sensors are used for continuous non-contact level measurement of liquids or solids. And convert it into electrical signals. The radar level sensor emits high-frequency…
What is a magnetic type level gauge? A magnetic Level Gauge is also called a magnetic level indicator. Magnetic Level Gauge is developed based on the principle of buoyancy and…
What is Point Level Measurement? Point Level Measurement refers to the use of a point level sensor to detect the material level in a storage tank or silo. Also called…
What is a capacitive liquid level sensors? Capacitive liquid level sensor is an instrument for continuous measurement of liquids and converting it to an electrical signal. Capacitive liquid level sensors…
A capacitive water level sensor is often used to measure the water level of the water storage tank. The capacitive water level sensor uses the change of measuring capacitance value…
Sulfuric acid storage tanks are mainly used to store sulfuric acid produced in acid production. The accuracy of the liquid level of the sulfuric acid storage tank is directly related…
The capacitive fuel level sensor refers to a capacitive liquid level transmitter used to measure the oil level. According to the principle of capacitance sensing, when the height of the…
Radar level transmitter and Ultrasonic level transmitter are both liquid level measuring instruments. The most obvious difference is that one uses electromagnetic waves and the other uses ultrasonic waves. So,…
Sino-Inst offers over 10 Ultrasonic liquid Level Sensing sensors and transmitters for level measurement. About 50% of these are float liquid level meters, 40% is the level switches.
A wide variety of Ultrasonic Level Sensing sensors and transmitters options are available to you, such as free samples, paid samples.
Sino-Inst is a globally recognized supplier and manufacturer of Ultrasonic Level Sensing sensors and transmitters instrumentation, located in China.
Wu Peng, born in 1980, is a highly respected and accomplished male engineer with extensive experience in the field of automation. With over 20 years of industry experience, Wu has made significant contributions to both academia and engineering projects.
Throughout his career, Wu Peng has participated in numerous national and international engineering projects. Some of his most notable projects include the development of an intelligent control system for oil refineries, the design of a cutting-edge distributed control system for petrochemical plants, and the optimization of control algorithms for natural gas pipelines.
Liquid Level Gauge also called Liquid level indicator. Liquid Level Gauge has contact and non-contact type. Here mainly discusses the non-contact Liquid Level Gauge, which is used for CO2 cylinder level measurement.
Portable co2 bottle liquid level gauge uses ultrasonic non-contact measurement technology. Detect and display the presence or absence of the Co2 cylinder liquid level. The Digital portable liquid level gauges are designed to offer a simple, accurate, rapid and reliable method. Determining the liquid level of high or low pressure CO2, Halon, FM200, Propane, Novec 1230 and any liquefied gas under pressure. No need to move or weigh the cylinders.
Portable Liquid Level Gauge Features
No contact with medium
Suitable for toxic, corrosive, or invasive medium
No need for drilling or welding on the container wall
Advanced ultrasonic sensor technology
Reliable measurement results
Easy and convenient to operate and maintain
Ultrasonic adaptive detection algorithm
High-contrast OLED color display, suitable for outdoor use under strong light
The added ultrasonic-waveform-display function facilitates parameter testing, waveform comparing and application of other functions to ensure measurement accuracy in complicated situations
Gooduser interface design
Comprehensive software displaysmeasurement resulting a simple manner
PLI range of Liquid Level Gauges
British CLASS PLI range of liquid level gauges testing equipment:
The portable liquid level meter is used in the detection of gas in the liquid state in the fire extinguishing system. It mainly detects: CO2\FM200\Halon (halogen fire extinguishing agent and other substitutes).
The instrument can indicate the position of many gases in the cylinder when they are in the liquid state, including propane or other gases. It can also be used to indicate the oil level and water level in the container, etc. The working principle of the instrument is a different response of an ultrasonic pulse to liquid with and without the state.
The portable liquid level meter uses ultrasonic signals to penetrate the wall of the steel cylinder and then enter the liquid gas.
The instrument reflects how much echo it receives through the pointer of the instrument itself.
The deviation value reflected by the instrument allows us to clearly identify the position of the gas and liquid interface. In this way, a reliable liquid level position can be obtained.
Features: Large graphic display ~ Automatic rapid set up ~ Temperature gauge in C & F to enable fast weight calculations ~ Smart plug-in to enable signal strength to be monitored as an audible signal from the internal speaker ~ Power boost facility for cylinders in poor condition ~ Cylinder wall thickness selector for thick (>4mm) or thin (<4mm) walled cylinders.
Unit Dimensions: 210 x 130 x 55mm
Unit Weight: 540g (including batteries and leather case)
Sensor: 1.5m cable and magnetic clamp for hands-free use
Sensor Dimensions: 95 x 60 x 60mm
Temperature Range: -10ºC to +50ºC*
94cm-long extension arm
Power Supply: 4 x AA batteries
Battery Life: 20 hours nominal with 4 x AA batteries
Carry Case Dimensions: 450 x 370 x 100mm
Operational Weight: 650g
Shipping Weight: 2.5Kg
ML Portable Ultrasonic Liquid Level Gauge
Portable ultrasonic liquid level indicator is best choice for tanks or pipes level measurement. It is designed to measure the presence or absence of liquid at a certain height position in a tank or in pipelines. Non-contact ultrasonic detection technology.
SI-ML works perfect for detection of dangerous toxic or corrosive liquids. Under ordinary conditions, the maximum wall thickness of measurable containers is 30mm. The product is suitable for the detection of various types of liquids. Liquids are non-crystalline or other particulate matter. For example CO2 Tank. Thanks to non-contact detection technology, this level indicator is ideal for detecting hazardous toxic or corrosive liquids.
Co2 cylinder specifications (external diameter division):
The CO2 cylinders measured by this meter are divided into the following 4 specifications: 215mm-225mm diameter cylinders. 270mm-280mm diameter cylinders. 345mm-355mm diameter cylinders. 395mm-405mm diameter cylinders. There are no excessive requirements for the height of the medium and the tank.
Co2 cylinder measurement operation:
Select “co2 cylinder”-“Choose a suitable cylinder diameter” through the menu and enter the measurement interface.
Hold the probe vertically and tightly on the tank, and press the <Measure> button to measure.
Measurement results are based on measurement parameters and level indicator lights (red is “no liquid”, green is “with liquid”)
Generally, the measurement is started from the bottom of the storage tank (measurement with liquid position). If the measurement parameter is> = 2, the current level is considered to be a liquid-free position. And <2 is considered to be a liquid level. if it is floating around 2, It is considered that the liquid level of the horizontal plane is approaching the liquid surface (usually about 5 cm).
Take multiple points on the same horizontal plane for measurement. And take the result with the highest probability as the final result (avoid the interference of welds and unknown factors).
Find the liquid level position step by step through the approximation measurement.
Co2 cylinder measurement Note:
Due to the irregular shape of the air outlet and the many welding kits on the top of the carbon dioxide cylinder, the bottom and top measurement results are invalid. (If the fuel tank is full, the top is usually empty).
Wu Peng, born in 1980, is a highly respected and accomplished male engineer with extensive experience in the field of automation. With over 20 years of industry experience, Wu has made significant contributions to both academia and engineering projects.
Throughout his career, Wu Peng has participated in numerous national and international engineering projects. Some of his most notable projects include the development of an intelligent control system for oil refineries, the design of a cutting-edge distributed control system for petrochemical plants, and the optimization of control algorithms for natural gas pipelines.
Dynamic pressure sensor, the transmitter is a high frequency sensor.
The high frequency dynamic pressure sensor adopts silicon stack silicon technology. At the same time, it has high responsiveness. At the same time, it also has high accuracy in low frequency or static data. The high-frequency dynamic pressure sensor has its own hybrid temperature compensation, and the special processing can reach 2000℃ instantaneously. It can provide stable performance in a wide temperature range, with good linearity, high natural frequency, short rise time and wide excellent response frequency band.
Sino-Inst offers a variety of Dynamic Pressure Sensors for pressure measurement. If you have any questions, please contact our sales engineers.
2 times full scale pressure (100MPa product overpressure is 1.1 times full scale pressure)
Ambient temperature
-20 … +85℃
Medium temperature
-40 … +85℃, special can be -10℃~200℃
Vibration influence
≤±0.01%FS (X, Y, Z axis, 200Hz/g)
Load Resistance
≤(U-12)/0.02Ω
Natural frequency
150KHz~2MHz
Transmitter frequency response
0~1KHz~200KHz
Rise Time
0~1mS~2μS
Zero temperature drift
Typical: ±0.02%FS/℃, maximum: ±0.05%FS/℃
Sensitivity temperature drift
±0.02%FS/℃, maximum: ±0.05%FS/℃
Resolution
Infinitely small in theory, usually 1/100000
Medium
Gas or liquid compatible with 316 stainless steel
Power supply
Transmitter power supply: 12~36VDC (generally 24VDC), ±15VDC switching power supply or linear power supply Sensor power supply: constant current: 1mA~4mA; constant voltage: 5VDC~24VDC
Signal output
Analog: 4~20mA, 1~5 V DC, 0~10VDC, 0~5V DC Sensor output: 1.5mV~15mV/V
SI-512H High Temperature Pressure Sensor High Temperature Pressure Sensor for pressure measurement of high temperature gas or liquid. Such as steam pressure. High temperature up to 800 ℃.
SI-338 Ceramic Pressure Sensor Ceramic pressure sensor is a pressure sensor refined from a thick ceramic base using a refined ceramic base. Cost-effective. Support OEM processing. 0-0.2MPa -…- 40MPa
Sino-Inst offers over 20 Pressure sensors. A wide variety of Pressure sensors options are available to you. Such as free samples, paid samples. Sino-Instrument is a globally recognized manufacturer of Pressure sensors, located in China.
Sino-Inst sells through a mature distribution network that reaches all 30 countries worldwide. Pressure sensors products are most popular in Europe, Southeast Asia, and Mid East. You can ensure product safety by selecting from certified suppliers. With ISO9001, ISO14001 certification.
Wu Peng, born in 1980, is a highly respected and accomplished male engineer with extensive experience in the field of automation. With over 20 years of industry experience, Wu has made significant contributions to both academia and engineering projects.
Throughout his career, Wu Peng has participated in numerous national and international engineering projects. Some of his most notable projects include the development of an intelligent control system for oil refineries, the design of a cutting-edge distributed control system for petrochemical plants, and the optimization of control algorithms for natural gas pipelines.
Monitoring the level of liquid chlorine storage tanks is a common problem in the chlor-alkali industry.
In the chlorine production process, sulfuric acid dehydration is used to dry the chlorine. There will be a small amount of acid mud in the liquid chlorine. Liquid chlorine is highly toxic and corrosive. Liquid chlorine storage tank level measurement must take into account the requirements of corrosion resistance, safety requirements, reliability, convenient installation and easy maintenance.
This article combines the application and comparison of the actual use of the liquid chlorine storage tank level measurement level gauge, which has practical guiding significance for the selection of the liquid chlorine storage tank level gauge in the chlor-alkali industry under the existing technical conditions.
Liquid Chlorine Storage Tanks chemical properties
Liquid chlorine is a yellow-green liquid. Boiling point -34.6℃. Melting point -103℃. It is vaporized into gas under normal pressure. Inhalation of the human body can be severely toxic, severely irritating and corrosive. It burns and explodes when mixed with other flammable gases in sunlight. Chlorine is a very reactive element and can react with most elements (or compounds).
Liquid chlorine is the basic chemical raw material, which can be used in metallurgy, textile, papermaking and other industries, and is the raw material for the synthesis of hydrochloric acid, polyvinyl chloride, plastics, and pesticides. Packed in high-pressure steel cylinders.
Hazard characteristics: Liquid chlorine will not burn, but it can support combustion. Generally combustible materials can be burned in chlorine gas, and general flammable gas or steam can also form explosive mixtures with chlorine gas.
Chlorine gas can react violently with many chemicals such as acetylene, turpentine, ether, ammonia, fuel gas, hydrocarbons, hydrogen, metal powder, etc. to explode or generate explosive substances. It is almost corrosive to metals and non-metals.
Liquid chlorine is generally used after gasification and has a wide range of uses. It is a strong oxidant. It is used for bleaching in the textile and paper industry, purification and disinfection of tap water, refining of magnesium and other metals, and production of pesticides, detergents, plastics, rubber, Various chlorine compounds such as medicine.
Liquid chlorine is a highly toxic substance, and the emergency code number is 31001. Should be stored in a cool, ventilated warehouse, special warehouse for special storage. Do not co-store or carpool transportation with combustibles, explosives and ammonia.
Level gauges types used for tank level measurement
In the tank level measurement, the following types of level gauges have a large number of practical applications:
1.Buoyancy level gauge
Such as float level gauge, flap level gauge, float level gauge, floating plate level gauge, float level gauge, steel belt level gauge. This type of buoyancy level gauge has measurement accuracy. However, the on-site installation and structure are more complicated, there are many mechanical parts, and the daily maintenance amount is very large in the actual application process.
2.Pressure type level gauge
Pressure transmitters, single-flange level transmitters, and drop-in level transmitters are often used for liquid level measurement in open vessels. Differential pressure transmitters and remote double-flange differential pressure transmitters are often used for liquid level measurement in closed vessels. Differential pressure level gauges are easily affected by medium density and temperature changes during measurement, and the maintenance of accessories is large. If the liquid level of a strong corrosive medium is measured, the instrument is expensive.
Ultrasonic level gauges, radar level gauges, and guided wave radar level gauges are all microwave level measuring instruments that can be used for solid and liquid level measurement. Although these level gauges have advanced technology and improved measurement accuracy, they are suitable for pressure vessels that store light hydrocarbons, liquid ammonia, and liquid chlorine.
Due to the low dielectric constant of the gas phase medium, volatility and a large number of droplets, it will absorb and affect the reflection of electromagnetic waves. Interference to the level measurement of the microwave level meter, resulting in unstable measurement value of the level meter.
Application of different level gauges in Liquid Chlorine Storage Tanks
Practice is the only criterion for testing truth. Each level gauge has its advantages and disadvantages, and the application performance of different level gauges under the same working conditions is not the same.
In this article, Sino-Inst shares with you the application experience of different types of level gauges in the level measurement of liquid chlorine storage tanks in the plant.
1.Application of radioactive level gauge in Liquid Chlorine Storage Tanks
The cobalt 60 radioactive level gauge is used to perform high-limit measurement and alarm on the liquid level of the liquid chlorine storage tank. The specific application is: installing cobalt 60 radiation sources and receiving devices on both sides of the high point of the liquid chlorine storage tank.
The cobalt 60 radioactive level gauge is installed on the outside of the storage tank and does not come into contact with the liquid chlorine. There is no potential for chlorine leakage, and the position measurement is accurate and reliable. However, the radioactive level gauge cannot realize continuous measurement and monitoring of the liquid level and the cobalt 60 radioactive source is easy to check Instrument maintenance workers cause personal hazards and are therefore not suitable for production.
2.Application of top-mounted float level gauge in Liquid Chlorine Storage Tanks
The top-mounted float level gauge is used to measure the liquid level of the liquid chlorine storage tank. The top-mounted float level gauge is inserted into the liquid chlorine storage tank from the top.
The top-mounted float level gauge works well in the initial stage of use. But with the passage of time, its drawbacks have gradually emerged. The top-mounted float level gauge needs to be in contact with liquid fluorine when measuring, and it is prone to fluorine gas leakage. Site environment It is highly corrosive, and the measuring rod of the reed switch relay is often desoldered due to corrosion. The failure rate is very high and the maintenance workload is large, which affects normal production.
The acid mud contained in the liquid chlorine adheres to the floating ball steel pipe. It causes the floating ball to move and even gets stuck, causing the level gauge float to not follow the liquid level change normally. A false liquid level is generated and the process production operation is affected. It is not fully applicable to liquid chlorine storage tank level measurement.
3.Application of capacitive level gauge in Liquid Chlorine Storage Tanks
Use a capacitive level meter to measure the level of the liquid chlorine storage tank. The capacitive level gauge is inserted from the top of the liquid chlorine storage tank, and the capacitance of the level gauge changes in proportion to the change height of the liquid chlorine level in the storage tank. This principle is used to achieve continuous measurement of the liquid chlorine storage tank level.
Capacitance level meter can meet the continuous measurement of liquid chlorine storage tank level, but it has the following disadvantages:
The measuring electrode of the capacitance level meter needs to be inserted into the liquid chlorine storage tank, and chlorine leakage is likely to occur during installation or disassembly, which endangers personal safety.
After the capacitance level gauge has been working for a period of time, the acid mud contained in the liquid chlorine will adhere to the inner and outer electrodes of the capacitance level gauge, causing changes in capacitance and large errors in measurement.
Due to the high toxicity of chlorine gas, the malfunctioning meter cannot be disassembled and repaired at any time, causing the malfunction meter to be unable to be repaired for a long time.
Due to the above reasons, the capacitance level meter is gradually eliminated after a period of use.
4.Application of side-mounted magnetic flap level gauge in liquid chlorine storage tanks
The side-mounted magnetic flap level gauge is connected to the storage tank with a measuring tube. The measuring tube is equipped with a magnetic float. The outside of the tube is composed of two-color porcelain rollers side by side to form an indicator. The magnetic float moves up and down with the change of the liquid chlorine level, driving the magnetic roller Rotate. The magnetic roller therefore changes color to indicate the liquid level.
The side-mounted magnetic flap level gauge has a good effect in the initial stage of use. Because the indicator is completely isolated from the medium, the effect of corrosion is overcome.
The magnetic float is sealed in the measuring tube to eliminate the hidden danger of chlorine leakage and ensure safety.
The disadvantage is that the measuring tube wall is frozen, and the acid sludge contained in the liquid chlorine will also cause the magnetic float to freeze or jam when working for a long time. This will cause measurement errors. It will seriously affect the process and production operations. Therefore, the liquid chlorine storage tank level cannot be fully applied measuring.
5.The application of external level gauge in Liquid Chlorine Storage Tanks
A. Working principle of external level gauge
The external measuring level gauge is an intelligent field transmitter type instrument. The external measuring level gauge flameproof host is installed near the liquid chlorine storage tank. The measuring head of the external measuring level gauge is tightly attached to the outer wall of the container. It depends on the detection container wall The tiny mechanical vibration on the upper side becomes an electric signal and is transmitted to the external measuring level gauge flameproof host. After this signal is processed, it becomes a digital signal and is sent to the CPU.
The instrument host filters and recognizes the various vibration waves of different modes obtained by the measuring head, and removes signals that have nothing to do with the change of the liquid level. It uses special software to perform complex calculations on the waveform of the signal, and uses artificial intelligence algorithms to calculate it. Analysis. To calculate the liquid level.
Therefore, the external level gauge is to continuously and accurately measure the height of the liquid level in the tank from the outside of the tank. It does not touch the liquid and gas in the tank at all, realizing a true isolation measurement.
The external level gauge has the following advantages:
①It can be used in the most demanding environment. It can measure liquids under any pressure. It can measure the most toxic liquids. It can measure the most corrosive liquids. It can measure absolutely sterile or extremely pure liquids.
②Safe to use. When measuring toxic, corrosive, pressure, flammable, explosive, volatile, and easy to leak liquids. Because the measuring head and the instrument are outside the container. During installation, repair, and maintenance operations, the operator does not touch the tank The liquid and gas inside are very safe. Even if the instrument is damaged or repaired, there will never be leakage.
③Meet environmental protection requirements. Neither liquid nor gas leaks. It does not pollute the environment and is a green instrument.
④ Installation and maintenance are the most convenient and economical. Because the liquid level gauge does not need to open a hole in the container, does not need a flange, or a connecting pipe, it is very convenient to install and maintain. The external level measuring instrument does not require manual calibration during installation and use, which is very convenient.
⑤High reliability and long service life. Because there are no mechanical moving parts in the measuring head of the liquid level meter and the meter, it is strictly sealed and isolated from the outside world. It will not produce abrasion or corrosion, it is very durable and reliable, and the maintenance workload is very small.
⑥ Accurate measurement. The external level measuring instrument can be continuously and automatically calibrated to ensure the highest measurement accuracy. In addition, the external level measuring instrument is divided into temperature compensation type, its measurement accuracy reaches 1%. Self-calibration type, its measurement accuracy reaches 0.2%. Among them, the self-calibrating liquid level gauge does not need manual calibration.
C. Disadvantages of external measuring liquid level gauge
① There are still some shortcomings of the external measurement type level gauge. The meter itself has a measurement dead zone. The external measurement type level gauge can only display a low level alarm within 200mm of the bottom of the container and cannot indicate an accurate level value. Since the company’s liquid chlorine storage tank level measurement monitoring is mainly to ensure high-level accurate monitoring, this defect does not affect normal use.
After analysis and comparison, it is believed that from the perspective of safe production and maintenance work, the external measurement type level gauge is currently the most suitable instrument for liquid chlorine storage tank level measurement.
②The advantage of the external measurement type level gauge is that it is easy to install, and there will be no hidden dangers of chlorine leakage and corrosion of the instrument.
According to reports from other petrochemical plants: the external measurement type level gauge will also have measurement failures after a period of time, mainly due to changes in the paste medium and gap, which is a common problem. This is also a problem that the tuning fork limit switch can avoid.
Therefore, the biggest obstacle to the application of external ultrasonic level meters is the need to achieve long-term all-weather operation after installation, which is a technical problem. In addition, for instruments that have problems on site, the supplier must respond to and solve the problems in a timely manner. This is a service problem.
Featured external level gauges in Liquid Chlorine Storage Tanks
HS-2000 External Mounted Ultrasonic Tank Level Sensor- (referred to as “external level gauge”). It adopts advanced signal processing technology and high-speed signal processing chip. It breaks through the influence of container wall thickness. Realizes the height of the liquid level in the closed container True non-contact measurement.
The ultrasonic liquid level sensor (probe) is installed directly under the outer wall (bottom) of the container under test. Calibrate the outer wall of the probe. There is no need to open holes for the container to be tested, easy to install, and does not affect production. It can accurately measure the level of various toxic substances, strong acids, strong alkalis and various pure liquids in high-pressure airtight containers.
The HS-2000 External Mounted Ultrasonic Tank Level Sensor has no special requirements for the material of the liquid medium and the container. The explosion-proof design is adopted to meet the explosion-proof requirements.
Wu Peng, born in 1980, is a highly respected and accomplished male engineer with extensive experience in the field of automation. With over 20 years of industry experience, Wu has made significant contributions to both academia and engineering projects.
Throughout his career, Wu Peng has participated in numerous national and international engineering projects. Some of his most notable projects include the development of an intelligent control system for oil refineries, the design of a cutting-edge distributed control system for petrochemical plants, and the optimization of control algorithms for natural gas pipelines.
Mass flow rate and Volumetric flow rate is what we must use in flow measurement and control. So what is mass flow and what is volumetric flow? How to switch between them? In this post, we compare the concept of volume flow and mass flow and the conversion between the two.
Commonly used flow meters, such as orifice plates. Turbine flowmeter. Vortex flowmeter. Electromagnetic Flowmeter. Rotameter. The flow measurement value of ultrasonic flowmeter and oval gear flowmeter is the volume flow of fluid. Coriolis mass flow meters and thermal gas mass flow meters measure mass flow.
Sino-Inst offers a variety of volume flow and mass flow meters for flow measurement. If you have any questions, please contact our sales engineers.
Flow rate refers to the ratio of the amount of fluid flowing through the cross-section of the pipe to the time it takes for that amount to pass through the cross-section. Flow is divided into volume flow and mass flow.
What is volume flow Rate?
The volume flow rate is the flow rate expressed by the volume of the fluid quantity. The volume flow is expressed by the formula: qv=V/t=u×A.
In the formula:
qv is the volume flow, m3/s.
V is the unit flow volume, m3.
t is the unit time, s.
u is the average flow velocity in the pipe, m/s.
A is the cross-sectional area of the pipeline, m2.
Among the commonly used flow meters, such as orifice plates, turbine flow meters, vortex flow meters, electromagnetic flowmeters, rotameters, ultrasonic flow meters, and oval gear flow meters, the flow measurement value is the volume flow of the fluid.
The mass flow rate and volume flow rate relationship can be briefly summarized as follows:
If the mass flow of the flow is known and needs to be converted into volume flow, the following formula can be used: qv=qm/ρ. In the formula, qv is volume flow, m3/s. qm is mass flow, kg/s. ρ is fluid Density, kg/m3.
If the volume flow rate of the fluid is known, it needs to be converted into a mass flow rate, which can be done with the formula: qm=qv×ρ.
The conversion factor between air volume flow rate and air volume flow rate is 1.29. That is, to convert the volume flow of air into the mass flow, multiply the coefficient by 1.29.
Solution: Let the mass of air passing in t hours be m kg, the volume be V cubic meters, and the known air density ρ = 1.29 kg/m3.
Then the volume flow rate of the air qv=V/t (cubic meters/hour), and the mass flow rate qm=m/t (kg/hour).
And because air quality = air density x air volume, m = ρV = 1.29V.
Then qm=m/t=ρV/t=ρqv=1.29qv.
That is, to convert the volume flow of air into a mass flow, multiply the coefficient by 1.29.
If the volume flow rate of the fluid is known, it needs to be converted into mass flow rate, which can be carried out by the formula: qm=qv×ρ
Volume flowrate (Volume Flowrate) is the volume of fluid passing through the flow section per unit time, referred to as flow rate, expressed by Q. Flow rate expressed in volume/time or volume/time. Such as: m³/h ,l/h. Volume flow rate (Q) = average velocity (v) * pipe cross-sectional area (A)
The fluid pressure and flow rate in the pipeline are completely two concepts. For fluids with high pressure, the flow rate can be high or low. Engineering pressure is the amount of force per unit area. The flow rate is the amount (weight or volume) of the fluid flowing through the pipe per unit time. Here, there is another important parameter: flow rate. It is the average velocity of fluid flowing in the pipe. The unit is: the flow rate per unit area (internal section of the pipeline). That is: the flow rate multiplied by the pipe cross-sectional area equals the flow rate. If the fluid is a gas (compressibility), the flow rate is constant, and the flow rate of a gas with high pressure is of course also large. If the size of the pipe is constant, the flow rate of the fluid with a large flow rate is of course also large; the pressure loss (i.e. pipeline resistance) is proportional to the square of the flow rate, that is, proportional to the square of the flow rate.
If the fluid under a certain pressure is directly discharged to the atmosphere under certain conditions (the diameter of the pipe is the same), the fluid pressure can be converted into velocity energy, and the flow rate of the fluid with high pressure is correspondingly high, and of course, the flow rate is also large.
What is a Thermal Mass Flow Meter ? The thermal mass flow meter is also called Thermal mass…
Sino-Inst is Manufacturer of Mass Flow Meters and Volumetric Flow Meters. We supply more than 50 kinds of Flow Meters. 40% mass flowmeters, and other types of Volumetric flowmeters.
Since the mass flowmeter has the ability to directly measure the mass flow of fluid beads, the measurement accuracy is high. It has a wide range of applications, low installation requirements, reliable operation of the instrument, and low maintenance rate. Mass flow meters have been widely used in flow measurement in petroleum, chemical, metallurgy, thermal, electric power, food and other fields.
Volumetric flowmeters are low cost and cover more measurement applications. It is also widely used in various industrial production control processes.
Sino-Inst’s Mass Flow Meters and Volumetric Flow Meters, made in China, Having good Quality, With better price. Our flow measurement instruments are widely used in China, India, Pakistan, the US, and other countries.
The entire team at Sino-Inst’s has received excellent training, so we can ensure that every client’s needs are met. For assistance with your product requirements, whether it’s a flow sensor, level sensor, or other device, give us a call.
Wu Peng, born in 1980, is a highly respected and accomplished male engineer with extensive experience in the field of automation. With over 20 years of industry experience, Wu has made significant contributions to both academia and engineering projects.
Throughout his career, Wu Peng has participated in numerous national and international engineering projects. Some of his most notable projects include the development of an intelligent control system for oil refineries, the design of a cutting-edge distributed control system for petrochemical plants, and the optimization of control algorithms for natural gas pipelines.
Magnetostrictive level gauge application tutorial. Just one article to help you understand !
This article introduces the installation method and typical application of magnetostrictive level gauge in depth. Help you fully understand the structure and selection of magnetostrictive level gauges.
Sino-Inst offers a variety of Magnetostrictive level gauges for level measurement. If you have any questions, please contact our sales engineers.
Substances expand and contract with heat. In addition to heating, magnetic and electric fields can also cause the size of objects to elongate or shrink. Under the action of an external magnetic field, the size of a ferromagnetic substance elongates (or shortens). After the external magnetic field is removed, it returns to its original length. This phenomenon is called magnetostriction (or effect).
Based on the principle of magnetostriction, a magnetostrictive wire is installed in the non-magnetic probe, and the sensor is connected to one end of the magnetostrictive wire. The main control electronic unit sends a narrow electromagnetic pulse to the magnetostrictive line, and the electromagnetic pulse is conducted along the magnetostrictive line.
The main control electronic unit accurately measures the time interval between the emission pulse and the return pulse through a precision circuit, and calculates the position of the float, that is, the height of the liquid level/interface.
Magnetostrictive level gauge application range
◆Power plant: reservoir, waste gas purification tank, fuel tank, etc. ◆Oil field: crude oil or product oil storage tank, three-phase separator, settling tank, sewage tank (pool), etc. ◆Petrochemical: oil pipelines, distillation towers, concentration tanks, liquefied gas tanks, ammonia tanks, oil refineries, etc. ◆Chemical industry: distillation tower, ammonia tank, toxic liquid tank, etc. ◆Water and water treatment: reservoirs, sewage tanks, water treatment tanks, sedimentation tanks, digestion towers, etc. ◆Others: food, pharmaceutical, environmental protection, papermaking and other industries
◆Multi-function: can measure liquid level and interface position separately or at the same time ◆High precision: measurement accuracy ±0.8mm or 0.01%FS (the larger one) ◆Wide scope of application: flexible and diversified installation methods. ◆Output mode: on-site instructions and remote electrical signal output ◆Low power consumption: two-wire loop 4-20mA output, LCD display
The principle and characteristics of the magnetostrictive level gauge are briefly introduced above.
The following content of this article will give a detailed introduction to the application of magnetostrictive level gauges. I hope you have a deep understanding of the installation and use of magnetostrictive level gauges on site after reading this article.
1.Probe form of magnetostrictive level gauge
Magnetostrictive level gauges usually have rod probes and cable probes. With different floats, the liquid level or interface can be measured.
①The probe is a rod type probe, which can measure liquid level or interface with different floats. The maximum length is 4m.
②The probe is a rod probe, which can be equipped with double floats to measure the liquid level and interface at the same time. The maximum length is 4m.
③The probe is a cable probe, which can measure liquid level or interface with different floats. The maximum length is 20m.
2.Installation method and structure of magnetostrictive level gauge
The magnetostrictive level gauge can be combined with the outer pontoon or the outer pontoon + magnetic flap into several installation methods. It is not only easy to install and maintain, but also can cooperate with the on-site flip display. Realize the on-site and remote dual output. The probe has multiple parameters to choose from. Including: installation type, connection method, probe installation type, end structure, etc.
①Installation of probe rod and magnetic flap
◆For the probe structure that is attached outside the probe. The probe rod is usually fixed on the opposite side of the connecting structure, as shown in the figure below.
◆When a magnetic flap is needed, the magnetic flap is usually fixed on the opposite side of the connection structure. At this time, the probe rod will move to any position on the left and right sides of the float, as shown in the figure below.
② Magnetostrictive level gauge probe top insertion + side/side installation method
The picture above shows the most commonly used side mounting: side-to-side mounting (the probe mounting type is for inserting the top of the probe)
Figure a. Connection mode: flange connection, bottom structure: end cover + plug Figure b. Connection method: chuck connection, bottom structure: blind flange Figure c. Connection method: welding, bottom structure: short pipe + drain valve Note: There is no necessary correspondence between the connection mode and the end structure.
③The bottom of the magnetostrictive level gauge probe is inserted + side/side installation method
The probe installation types in the above figure are all “insert installation at the bottom of the probe”.
Figure d. Top structure: end cover + plug Figure e. Top structure: blind flange Figure f. Top structure: closed This structure is not conducive to sewage and maintenance. Therefore, when using the probe upside down, it is recommended to install the probe upside down and externally bound.
④Figure g shows the magnetostrictive level gauge probe top insertion + top/side installation ⑤Figure h shows the bottom insertion + side/bottom installation of the magnetostrictive level gauge probe ⑥Figure i shows the magnetostrictive level gauge probe top insertion + top-mounted installation + magnetic flap display ⑦Picture j is the magnetostrictive level gauge probe top insertion + side/side installation + magnetic flap display Note: The two installation methods of ⑥ and ⑦ are suitable for occasions where the measurement position is low.
⑧Figure k Magnetostrictive level gauge probe upside-down external binding + bottom-mounted plug-in installation + magnetic flap display ⑨Figure l Magnetostrictive level gauge probe upside-down external binding + side/side installation + magnetic flap display
Note: ⑧ and ⑨ installation methods The probe installation type is the probe inverted and externally bound. These two installation methods are suitable for occasions with higher measuring positions. The end cover + plug structure or blind flange structure is selected for the bottom, which is conducive to sewage and maintenance.
The above pictures are all attached to the outside of the probe. ⑩Figure m shows the probe front-mounted external binding installation ⑪Figure n shows the probe front-mounted external binding installation ⑫Figure o shows the probe upside-down and external binding installation The manufacturer will choose the formal installation type according to the top structure
The picture above is a schematic diagram showing the magnetostrictive level gauge with a magnetic flap. ⑬Picture p is side-mounted, side-to-side mounted, with the probe top inserted ⑭Figure q shows two views of side-mounted, side-to-side installation, the probe top is inserted and installed, and the bottom end cover + plug structure ⑮Figure r is a schematic diagram of the side-mounted, side-to-side mounted, the probe is mounted with an external binding type, the top is closed, and the bottom drain valve structure is schematic.
Typical tank application of magnetostrictive level gauge
1.Magnetostrictive liquid level gauge is used for liquid level measurement of agitated and foamed containers
2.Magnetostrictive level gauge is used for liquid level measurement of small-sized containers
◆When the container to be measured is small, the use of side-to-side connection will reduce the effective measurement range. At this time, the side-to-bottom or top-to-side connection can be used to effectively increase the measurement range.
◆When the process temperature is high, you should pay attention to heat preservation, as shown in the figure on the right, you can use insulation cotton for heat preservation, or use electric heat tracing and steam heat tracing for heat preservation.
The “buried tank” here includes a container whose main body is buried in the ground and a container whose sides are covered and cannot be installed with meters. For the measurement of this type of container, simple applications can use rod probes and cable probes. If you need on-site display, you need to use a magnetic flap + top-mounted plug-in installation type
When the location of the container to be measured is high, it is difficult to install, debug, and maintain the instrument, and it is difficult to display on-site. It is recommended to use magnetic flap + bottom-mounted plug-in installation type. Or magnetic flap + bottom-mounted side-side mounting type.
Magnetostrictive level gauge installation methods and professional knowledge of typical applications are shared here.
I don’t know if you have noticed: whether there is a sudden sense of clarity when selecting the magnetostrictive level gauge based on the on-site working conditions and these installation and application examples. The selection is simply to convert the legend to the response model!
Sino-Inst offers over 10 Magnetostrictive level gauges for level measurement. About 50% of these are Magnetostrictive liquid level meters, 40% is the tank level sensor.
A wide variety of Magnetostrictive level gauges options are available to you, such as free samples, paid samples.
Sino-Inst is a globally recognized supplier and manufacturer of Magnetostrictive level measurement instrumentation, located in China.
Wu Peng, born in 1980, is a highly respected and accomplished male engineer with extensive experience in the field of automation. With over 20 years of industry experience, Wu has made significant contributions to both academia and engineering projects.
Throughout his career, Wu Peng has participated in numerous national and international engineering projects. Some of his most notable projects include the development of an intelligent control system for oil refineries, the design of a cutting-edge distributed control system for petrochemical plants, and the optimization of control algorithms for natural gas pipelines.
Intrinsically safe vs explosion proof is a common function of pressure transmitters. When pressure transmitters need to be used in high-risk and explosive places, you must know it!
The explosion-proof pressure transmitter is divided into: intrinsically safe pressure transmitter (explosion-proof mark Exia ⅡC T6 Ga), explosion-proof pressure transmitter (explosion-proof mark Exd ⅡC T6 Gb). Intrinsically safe pressure transmitters must be used with safety barriers. The connection terminals of explosion-proof pressure transmitters must have an explosion-proof electrical connector box and a solid shell.
Sino-Inst offers a variety of explosion-proof pressure transmitters. If you have any questions, please contact our sales engineers.
It is often necessary to use explosion-proof instruments in industrial sites. The general industrial explosion-proof instruments are mainly explosion-proof and intrinsically safe. So, how to understand the difference between them?
Different from the design concept:
Flameproof definition:
It can withstand the explosive pressure of internal explosive gas mixture. And can prevent the internal explosion from spreading to the explosive mixture around the enclosure of electrical equipment enclosure (zone I explosion-proof technology).
Dangerous gases are allowed to enter the flameproof enclosure, which may cause an explosion. However, the enclosure must have sufficient strength. And each shell joint surface must have a sufficiently long engagement length and a sufficiently small gap. To ensure that the internal explosion will not pass through the flameproof joint and cause the external environment to explode.
Clearance explosion-proof technology. Rely on the gap and mesh length to achieve the effect of cooling and flameout.
Definition of intrinsic safety:
Any electric spark or any thermal effect generated under the conditions specified in the standard (including normal operation and specified fault conditions) cannot ignite the circuits in the specified explosive gas environment (Zone 0/I explosion-proof technology).
It is a “safe” technology that uses suppression of ignition source energy as an explosion-proof method. It is required that the electric spark or thermal effect that the equipment may produce under normal operation or failure state are respectively less than the minimum ignition energy and self-ignition temperature of the explosive dangerous gas. For example: hydrogen 19uJ 560℃.
Intrinsically safe technology is actually a low-power design technology. Therefore, it can be well applied to industrial automation instruments.
Explosion-proof applicable area: It can only be installed in hazardous locations in Zone 1 or Zone 2.
Intrinsically safe application area:
Exia: Equipment that can maintain explosion-proof performance until two components or other types of failures. Intrinsically safe equipment can be installed in hazardous locations in Zone 0, Zone 1, and Zone 2. Exia intrinsically safe equipment is the only explosion-proof electrical equipment that can be installed in zone 0.
Exib: Equipment that can maintain explosion-proof performance until a component or other type of failure. Intrinsically safe equipment can be installed in hazardous locations in Zone 1 and Zone 2.
All our electronic pressure transducers can be offered with Explosion-proof. Select explosion-proof pressure transmitters with Ex d certification and 4-20mA output signals for installation. These installations require the use of equipment and enclosures designated as containing internal explosives. This prevents ignition of the explosive environment surrounding the equipment ( Specified) Flameproof area.
Storage and transportation monitoring of oil tanks and oil products, petrochemical equipment, oil refining;
Oxygen transmission system and pipeline, hydrogen equipment;
Power stations, boilers, thermal power units, etc.;
Petrochemical environmental protection air compressor light industry machinery metallurgy;
Other pressure measurement environments with explosion-proof requirements.
Of course, intrinsic safety and explosion-proof are not limited to pressure transmitters. Other industrial instruments have this function. To ensure the use of users in dangerous and harsh environments.
More Featured intrinsic safety and explosion-proof sensors
Hygienic / Sanitary Pressure Transmitter Also called Hygienic pressure Transmitters, or tri clamp pressure transmitter. Sanitary pressure Transmitters is used to food &beverage or pharmaceutical application.
High-Temperature Pressure Transmitter High-temperature pressure transmitters with a 4-20mA output. which has a temperature capability of over 850 °C and is not pyroelectric.
Hydrostatic pressure transmitter Hydrostatic pressure transmitter is used for fluid hydrostatic pressure measurement. With working static pressure up to 32Mpa, for liquid, gas or steam .
Sino-Inst offers a variety of Intrinsically Safe vs Explosion Proof Pressure Transmitters for industrial pressure measurement. If you have any questions, please contact our sales engineers.
Wu Peng, born in 1980, is a highly respected and accomplished male engineer with extensive experience in the field of automation. With over 20 years of industry experience, Wu has made significant contributions to both academia and engineering projects.
Throughout his career, Wu Peng has participated in numerous national and international engineering projects. Some of his most notable projects include the development of an intelligent control system for oil refineries, the design of a cutting-edge distributed control system for petrochemical plants, and the optimization of control algorithms for natural gas pipelines.