Liquid level-pressure coordinated control method used for gas-liquid separator

A technology of gas-liquid separator and gas-phase pressure, applied in non-electric variable control, control/regulation system, and simultaneous control of multiple variables, etc., can solve the adverse effects of electric submersible pumps, cannot provide stable pressure, and unfavorable liquid level stability, etc. question

Active Publication Date: 2015-08-19
CHINA NAT OFFSHORE OIL CORP +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although the variable pressure control can stabilize the liquid level in the separator, it cannot provide stable pressure, which will have adverse effects on the slug control mechanism in front of the separator and the processing equipment after the separator. Submersible pumps, self-flowing wells and power generation systems have adverse effects. Therefore, offshore oil production platforms mos

Method used

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  • Liquid level-pressure coordinated control method used for gas-liquid separator
  • Liquid level-pressure coordinated control method used for gas-liquid separator
  • Liquid level-pressure coordinated control method used for gas-liquid separator

Examples

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Embodiment

[0077] Example: such as image 3 As shown, a gathering and transportation-riser oil-gas-water multiphase flow experimental system including a gas-liquid separator 7 and a liquid level-pressure linkage control device is set up. The system also includes a plunger oil pump 8, a plunger water pump 9, an air compressor 10. Gas-liquid mixer 11, oil-water separator 12, oil tank 13 and water tank 14. The plunger oil pump 8, the plunger water pump 9, and the air compressor 10 are respectively connected to the inlet of the gas-liquid mixer 11 through the gathering pipeline, and the outlet of the gas-liquid mixer 11 is connected to the gas-liquid inlet port of the gas-liquid separator 7 through a standpipe. connection, the liquid phase outlet of the gas-liquid separator 7 is connected to the inlet of the oil-water separator 12 through the gathering pipeline, the oil outlet of the oil-water separator 12 is connected to the inlet of the oil tank 13, the outlet of the oil tank 13 is connect...

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Abstract

The invention relates to a liquid level-pressure coordinated control method used for a gas-liquid separator, used to set a liquid level-pressure coordinated control device. The method comprises: presetting each target value and opening initial values; determining whether gas-phase pressure is larger than a preset gas-phase pressure target value, calculating a valve opening value of a first pneumatic control valve and feeding back to a valve to operate; determining the relations between the difference value of the maximum value and the minimum value of pressure measuring values and pressure fluctuation errors; determining whether liquid level measuring values are larger than a preset liquid level height target value, calculating the valve opening value of a second pneumatic control valve and feeding back to a valve to operate; determining relations between the difference value of the maximum value and the minimum value of liquid level measuring values and liquid level fluctuation errors; performing simple control on gas-phase pressure and liquid level height in the gas-liquid separator; determining received liquid level height; and a liquid level-pressure operation control module determining whether the received gas-phase pressure exceeds an error range, and determining whether the received liquid level height exceeds an error range.

Description

technical field [0001] The invention relates to a method for stabilizing the liquid level control of a gas-liquid separator, in particular to a pressure-liquid level linkage control method for gas-liquid separators in land and offshore oil fields in the technical field of petroleum engineering multiphase fluid control. Background technique [0002] During the exploitation of offshore oil and gas fields, in order to reduce production costs and improve transportation efficiency, the produced oil-gas-water multiphase mixture is often transported to offshore platforms through subsea mixed pipelines and standpipes, in order to separate gas and liquid on the platform , and at the same time avoid affecting the normal production of offshore oil and gas fields when slug flow or severe slug flow occurs in the gathering pipeline-standpipe, a gas-liquid separator must be installed at the outlet of the riser pipe. In the process of onshore oil and gas transportation, gas-liquid separator...

Claims

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Application Information

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IPC IPC(8): G05D27/02
Inventor 李清平郭烈锦程兵谢晨姚海元李文升周宏亮秦蕊刘永飞
Owner CHINA NAT OFFSHORE OIL CORP
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