Circulating temperature rise of compressor station caused by opening of anti-surge valve and its solution

During the operation of the compressor station where the centralized air after-cooling mode is adopted, the uncooled hightemperature natural gas from the discharge of compressor enters the suction of compressor through the anti-surge pipeline after the anti-surge valve is opened, and then the natura...

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Main Authors: PU Bin, XU Lie, HE Pengfei, JIANG Sen
Format: Article
Language:zho
Published: Editorial Office of Oil & Gas Storage and Transportation 2023-06-01
Series:You-qi chuyun
Subjects:
Online Access:http://kykxxb.cumtb.edu.cn/article/10.6047/j.issn.1000-8241.2023.06.004
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author PU Bin
XU Lie
HE Pengfei
JIANG Sen
author_facet PU Bin
XU Lie
HE Pengfei
JIANG Sen
author_sort PU Bin
collection DOAJ
description During the operation of the compressor station where the centralized air after-cooling mode is adopted, the uncooled hightemperature natural gas from the discharge of compressor enters the suction of compressor through the anti-surge pipeline after the anti-surge valve is opened, and then the natural gas is subjected to the repeated cyclic pressurization in the compressor, resulting in obvious temperature rise. During the operation of the unmanned station, there are problems of untimely handling of such phenomenon, which affects the normal operation of the compressor and shortens the life of the pipeline coating. Herein, the causes and effects of circulating temperature rise were analyzed, and it was proposed to open the circulation valve in the station by control to an appropriate opening, further to close the anti-surge valve of the compressor and solve the problem of circulating temperature rise. Therefore, the PI control with dead band was proposed to control the opening of the circulation valve in the station, and the conditions for opening the circulation valve in the station, the target value of PI control and the relevant control parameters were also set. It is verified through operation that the circulating temperature rise after the opening of anti-surge valve of the compressor under the condition of centralized air after-cooling process is effectively controlled, capable of ensuring the safe operation of the compressor station. Generally, the research results could provide guidance for the automatic control of the circulation valve in the compressor station in the centralized air after-cooling mode, laying a foundation for the construction of the unmanned station.
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spelling doaj.art-d6a18ee6b56c42f4acd9c6bfd2cbb8fe2024-04-15T08:14:20ZzhoEditorial Office of Oil & Gas Storage and TransportationYou-qi chuyun1000-82412023-06-0141663264010.6047/j.issn.1000-8241.2023.06.00420230604Circulating temperature rise of compressor station caused by opening of anti-surge valve and its solutionPU Bin0XU Lie1HE Pengfei2JIANG Sen3PipeChina West Pipeline CompanyPipeChina West Pipeline CompanyPipeChina West Pipeline CompanyPipeChina West Pipeline CompanyDuring the operation of the compressor station where the centralized air after-cooling mode is adopted, the uncooled hightemperature natural gas from the discharge of compressor enters the suction of compressor through the anti-surge pipeline after the anti-surge valve is opened, and then the natural gas is subjected to the repeated cyclic pressurization in the compressor, resulting in obvious temperature rise. During the operation of the unmanned station, there are problems of untimely handling of such phenomenon, which affects the normal operation of the compressor and shortens the life of the pipeline coating. Herein, the causes and effects of circulating temperature rise were analyzed, and it was proposed to open the circulation valve in the station by control to an appropriate opening, further to close the anti-surge valve of the compressor and solve the problem of circulating temperature rise. Therefore, the PI control with dead band was proposed to control the opening of the circulation valve in the station, and the conditions for opening the circulation valve in the station, the target value of PI control and the relevant control parameters were also set. It is verified through operation that the circulating temperature rise after the opening of anti-surge valve of the compressor under the condition of centralized air after-cooling process is effectively controlled, capable of ensuring the safe operation of the compressor station. Generally, the research results could provide guidance for the automatic control of the circulation valve in the compressor station in the centralized air after-cooling mode, laying a foundation for the construction of the unmanned station.http://kykxxb.cumtb.edu.cn/article/10.6047/j.issn.1000-8241.2023.06.004anti-surge valveinternal station circulationcentralized air coolingtemperature risedead band
spellingShingle PU Bin
XU Lie
HE Pengfei
JIANG Sen
Circulating temperature rise of compressor station caused by opening of anti-surge valve and its solution
You-qi chuyun
anti-surge valve
internal station circulation
centralized air cooling
temperature rise
dead band
title Circulating temperature rise of compressor station caused by opening of anti-surge valve and its solution
title_full Circulating temperature rise of compressor station caused by opening of anti-surge valve and its solution
title_fullStr Circulating temperature rise of compressor station caused by opening of anti-surge valve and its solution
title_full_unstemmed Circulating temperature rise of compressor station caused by opening of anti-surge valve and its solution
title_short Circulating temperature rise of compressor station caused by opening of anti-surge valve and its solution
title_sort circulating temperature rise of compressor station caused by opening of anti surge valve and its solution
topic anti-surge valve
internal station circulation
centralized air cooling
temperature rise
dead band
url http://kykxxb.cumtb.edu.cn/article/10.6047/j.issn.1000-8241.2023.06.004
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