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Acoustically Driven Chatter In Modulating Pilot-Operated Pressure Relief Valves: Identification and analysis of valve instability to prevent valve damage

机译:调节先导式溢流阀中的声驱动颤振:识别和分析阀不稳定以防止阀损坏

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摘要

Pressure relief valves are included as an essential element of many compressor piping systems to prevent over-pressurization and to minimize the loss of process gas during relief events. Failure of the valve to operate properly can result in excessive quantities of vented gas and/or catastrophic failure of the piping system. Several mechanisms for chatter and instability have been previously identified for spring-loaded relief valves, but pilot-operated relief valves are widely considered to be stable. In this paper, pilot-operated pressure relief valves are shown to be susceptible to a dynamic instability under certain conditions where valve dynamics couple with upstream piping acoustics. This self-exciting instability can cause severe oscillations of the valve piston, damaging the valve seat, preventing resealing and possibly causing damage to attached piping. Two case studies are presented that show damaging unstable oscillations in a field installation and a blowdown rig, and a methodology is presented for modeling the instability by coupling a valve dynamic model with a 1-D transient fluid dynamics simulation code. Modeling results are compared with measured stable and unstable operations in a blowdown rig to show that the modeling approach accurately predicts the observed behaviors.
机译:泄压阀是许多压缩机管道系统的基本组成部分,可防止泄压时过压并最大程度减少过程气体的损失。阀门无法正常运行会导致排出的气体过多和/或管道系统发生灾难性故障。对于弹簧加载的安全阀,先前已经确定了几种颤动和不稳定的机制,但是先导式安全阀被广泛认为是稳定的。在本文中,先导式泄压阀在某些情况下表现出动态不稳定性,其中某些情况下阀门动态与上游管道声学耦合。这种自激的不稳定性会引起阀活塞的剧烈振动,损坏阀座,防止重新密封并可能损坏所连接的管道。提出了两个案例研究,显示了在现场安装和排污装置中破坏性不稳定振荡​​,并提出了通过将阀门动态模型与一维瞬态流体动力学模拟代码耦合来对不稳定性进行建模的方法。将建模结果与排污设备中测得的稳定和不稳定操作进行比较,以表明建模方法可以准确地预测观察到的行为。

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