LPG gas vortex flowmeter is a flow measurement device designed based on the vortex effect principle, which is widely used in the storage, processing and use of liquefied petroleum gas (LPG).
The LPG gas vortex flowmeter is a flowmeter instrument for measuring the volumetric and total volume flow of gases in closed pipelines, which is explosion-proof and can be used without any problems in explosion-hazardous environments. It has a wide range of applications and can be used in industrial and mining enterprises, oil fields, gas fields, metallurgy and electric power, gas and other departments.
The working principle of LPG gas vortex flowmeter is based on the Kamen vortex theory. When a fluid (e.g. LPG) flows through the vortex generator inside the flowmeter, vortices are generated alternately on both sides of the vortex generator, and these vortices are called Kamen vortices. The separation frequency of the vortices is directly proportional to the flow rate of the fluid, and by measuring this frequency, the flow rate of the fluid can be calculated. Specifically, when the fluid passes through the flowmeter, the vortex columns formed on both sides of the vortex generator will form a vortex street downstream, and the frequency of the vortex street is detected by the piezoelectric sensor, which is then operated and processed by the flow totalizer to ultimately obtain the flow rate value of the fluid.
LPG gas vortex flowmeter is widely used in petroleum, tshuaj, metallurgy, heat, textile, paper and other fields, especially suitable for flow measurement during storage, processing and use of LPG. Piv txwv li, in the filling and unloading process of LPG, vortex flowmeter can accurately measure the flow rate to ensure the safety and efficiency of storage and transportation. In addition, vortex flowmeters play an important role in the processing and use of LPG, helping to achieve accurate flow control and metering.
LPG gas vortex flowmeters play an important role in the storage, processing and use of liquefied petroleum gas. However, installation requirements, temperature limitations and pipe diameter limitations need to be taken into account to ensure measurement accuracy and reliability.
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