Computerized Performance Monitoring System for Turboexpander Brake Compressor

Vadim Goryachikh, Fahad Alghamdi, Abdulrahman Takrouni
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Abstract

Natural gas liquid (NGL) production facilities, typically, utilize turbo-expander-brake compressor (TE) to generate cold for C2+ separation from the natural gas by isentropic expansion of feed stream and use energy generated by expansion to compress residue gas. Experience shows that during operational phase TE can exposed to operation outside of design window that may lead to machine integrity loss and consequent impact on production. At the same time, there is a lack of performance indicators that help operator to monitor operating window of the machine and proactively identify performance deterioration. For instance, TE brake compressor side is always equipped with anti-surge protection system, including surge deviation alarms and trip. However, there is often gap in monitoring deviation from stonewall region. At the same time, in some of the designs (2x50% machines) likelihood of running brake compressor in stonewall is high during one machine trip or train start-up, turndown operating modes.
涡轮膨胀机制动压缩机计算机性能监测系统
天然气液体(NGL)生产设施通常利用涡轮-膨胀-制动压缩机(TE)通过进料流的等熵膨胀产生C2+从天然气中分离出来的冷,并利用膨胀产生的能量压缩残余气体。经验表明,在运行阶段,TE可能会暴露在设计窗口之外的操作中,这可能会导致机器完整性的损失,并由此对生产产生影响。同时,缺乏性能指标来帮助操作员监控机器的运行窗口,主动识别性能恶化。例如,TE制动压缩机侧始终配备防喘振保护系统,包括喘振偏差报警和跳闸。然而,在监测偏离石墙区往往存在差距。同时,在某些设计中(2x50%的机器),在一次机器行程或火车启动、关闭操作模式期间,制动压缩机在石墙上运行的可能性很高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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