P9.92MPa DN1100Three phase testing separator

A device that separates oil, gas, and water from the formation fluid on the ground and accurately measures their production. It can be divided into three forms: vertical, horizontal, and spherical. For the convenience of transportation, horizontal separators are usually used for production measurement. The typical internal structure of a horizontal three-phase separator mainly includes: inlet splitter, defoamer, coalescing plate, vortex eliminator, mist eliminator, etc.

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Three phase testing separator demister device

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P9.92MPa DN1100 Horizontal Three-phase Test Separator for EOG Resources China Limited
 

A device that separates oil, gas, and water from the formation fluid on the ground and accurately measures their production. It can be divided into three forms: vertical, horizontal, and spherical. For the convenience of transportation, horizontal separators are usually used for production measurement. The typical internal structure of a horizontal three-phase separator mainly includes: inlet splitter, defoamer, coalescing plate, vortex eliminator, mist eliminator, etc.
When the local layer fluid enters the three-phase separator, it first encounters an inlet diverter to preliminarily separate the liquid and gas. The gas carrying a large number of liquid droplets is further separated by a coalescence plate, and then further purified by a defoamer and mist eliminator, making it dry gas and discharged from the outlet. There is an air control valve installed on the exhaust pipeline to control the amount of gas emissions, in order to maintain the required pressure inside the container. Under the action of gravity, due to the density difference between oil and water, free water sinks to the bottom of the container, oil floats above, and enters the oil chamber through the oil water baffle. The float type liquid level regulator controls the crude oil discharge amount by manipulating the oil discharge valve to maintain the stability of the oil surface. The separated free water is discharged through the drainage valve operated by the oil-water interface regulator to maintain the stability of the oil-water interface.

 
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