Re Configuring and Restaging Centrifugal Compressors for Depleting Reservoir Pressures

Roy Sahadevan
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Abstract

Compressor stations are essential to export natural gas through pipelines. Gas reservoirs deplete over the years, as a consequence, gas compressor stations experience a lower-than-normal suction pressure. Hence it becomes increasingly difficult for the existing compressor hardware to export gas to destination. Variable speed compressors are designed with certain amount of flexibility to accommodate changes in inlet pressure conditions. However significant changes in inlet operating conditions, because of reservoir depletion, adversely affect natural gas export through centrifugal gas compressors. This prompts operating companies to develop alternate solutions to export low pressure gas. In the process, compressor modification opportunities need to be identified, developed and be applied to facilitate gas export at revised inlet conditions, either by changing pressure ratio across the compressor or gas flow rate or both. Rearranging parallel compressors to series operation is one of the likely methods of achieving higher pressure ratio for gas export. Restaging of existing compressor may also be required to optimize compressor operation. Cost effective projects are delivered by lining up the compressors differently and by changing compressor internal stator and rotor components to suit new operating conditions, avoiding off-design operation, and allowing the modified compressor to operate in an envelope with increased operational efficiency. This is also known as upgrade or re-rating of compressors. The paper is about rearranging and restaging existing gas compressors in onshore gas compressor stations, to export natural gas, when the gas wells experiencing significant pressure depletion. The paper explain method of establishing maximum gas export rate, highest pipeline back pressure for gas export and the compressor discharge pressures at battery limits. The adequacy checks are performed on compressors, motors, and all associated auxiliary systems.
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重新配置和重新配置离心式压缩机以耗尽储层压力
压缩站对于通过管道出口天然气至关重要。随着时间的推移,气藏会逐渐枯竭,因此气体压缩站的吸入压力会低于正常水平。因此,现有的压缩机硬件将天然气出口到目的地变得越来越困难。变速压缩机的设计具有一定的灵活性,以适应进口压力条件的变化。然而,由于储层枯竭,进口操作条件的重大变化对离心式气体压缩机的天然气出口产生了不利影响。这促使运营公司开发低压天然气出口的替代解决方案。在此过程中,需要确定、开发和应用压缩机改造机会,通过改变压缩机的压力比或气体流速,或两者兼而有之,以促进在修改的进口条件下的天然气出口。将并联压缩机重新布置为串联运行是提高气体出口压比的可行方法之一。也可能需要对现有的压缩机进行改造,以优化压缩机的运行。通过对压缩机进行不同的排列,改变压缩机内部定子和转子组件以适应新的运行条件,避免非设计运行,并允许改进后的压缩机在包络内运行,从而提高运行效率,从而实现成本效益项目。这也被称为压缩机的升级或重新评级。本文是关于重新安排和重新安置陆上天然气压缩站现有的天然气压缩机,以出口天然气,当气井经历显著的压力枯竭。本文阐述了确定最大气体输出速率、最高气体输出管道背压和电池极限下压缩机排气压力的方法。对压缩机、电动机和所有相关辅助系统进行充分性检查。
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