The electromagnetic flowmeter is a result of measuring the flow rate by measuring the flow velocity of a conductive liquid such as water, acid, caustic soda, slurry, etc. in a pipe. The electromagnetic flow meter can measure the conductivity of the liquid to be greater than about 5 uS/cm. Therefore, if an electromagnetic flowmeter is used to measure a liquid with low conductivity, such as deionized water, boiler feed water, or hydrocarbons, the flow meter can be turned off and zero flow measured.
The intelligent electromagnetic flowmeter's internal non-resistive components do not impede the flow of liquid, so it can be applied to clean, hygienic, dirty, corrosive and slurry flow measurements. However, for non-conductive and gaseous hydrocarbons and gases cannot be measured,
Electromagnetic flowmeters do not require large upstream and downstream straight sections, they can be installed on relatively short pipelines. The electromagnetic flowmeter usually only needs 3-5 times diameter upstream straight pipe section and 0-3 times diameter downstream straight pipe section to measure the electrode plane operation of the electromagnetic flowmeter.
Applications for electromagnetic flowmeters include: dirty liquids for applications in water, wastewater, mining, mineral processing, power, pulp and paper, chemicals, etc. Applications in water and wastewater include forces between liquid water/wastewater treatment zones Water pipe transfer; treated and untreated sewage, process water, water and chemical wastewater treatment plants; applications in the mining and mineral processing industries, including process water and process cement slurry flow and heavy medium flow. It can handle the flow of highly corrosive liquids such as acids and caustic soda and abrasive slurries. The application of corrosive liquids is often the discovery of chemical materials used in most industries in the chemical industry. Coal water slurry applications are commonly found in mining, beneficiation, pulp and paper, and wastewater industries.
The electromagnetic flowmeter must ensure that the measuring tube is completely filled with liquid before it can be measured, otherwise the flow rate will be affected.
In addition, when using the intelligent electromagnetic flowmeter for liquid flow measurement in a vacuum pipe, care must be taken to prevent the electromagnetic flowmeter lining from being folded and detached under vacuum, causing damage to the electromagnetic flowmeter. Similarly, if the temperature is too high, the electromagnetic flowmeter (even if it is not normal) may cause permanent damage.
The intelligent electromagnetic flowmeter's internal non-resistive components do not impede the flow of liquid, so it can be applied to clean, hygienic, dirty, corrosive and slurry flow measurements. However, for non-conductive and gaseous hydrocarbons and gases cannot be measured,
Electromagnetic flowmeters do not require large upstream and downstream straight sections, they can be installed on relatively short pipelines. The electromagnetic flowmeter usually only needs 3-5 times diameter upstream straight pipe section and 0-3 times diameter downstream straight pipe section to measure the electrode plane operation of the electromagnetic flowmeter.
Applications for electromagnetic flowmeters include: dirty liquids for applications in water, wastewater, mining, mineral processing, power, pulp and paper, chemicals, etc. Applications in water and wastewater include forces between liquid water/wastewater treatment zones Water pipe transfer; treated and untreated sewage, process water, water and chemical wastewater treatment plants; applications in the mining and mineral processing industries, including process water and process cement slurry flow and heavy medium flow. It can handle the flow of highly corrosive liquids such as acids and caustic soda and abrasive slurries. The application of corrosive liquids is often the discovery of chemical materials used in most industries in the chemical industry. Coal water slurry applications are commonly found in mining, beneficiation, pulp and paper, and wastewater industries.
The electromagnetic flowmeter must ensure that the measuring tube is completely filled with liquid before it can be measured, otherwise the flow rate will be affected.
In addition, when using the intelligent electromagnetic flowmeter for liquid flow measurement in a vacuum pipe, care must be taken to prevent the electromagnetic flowmeter lining from being folded and detached under vacuum, causing damage to the electromagnetic flowmeter. Similarly, if the temperature is too high, the electromagnetic flowmeter (even if it is not normal) may cause permanent damage.
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