首页> 外文会议>ASME Turbo Expo >IMPROVING THE DESIGN OF A HIGH PRESSURE CASING WITH THE HELP OF FINITE ELEMENT ANALYSIS TO ENSURE THE ROTOR DYNAMIC STABILITY OF A HIGH PRESSURE CENTRIFUGAL COMPRESSOR EQUIPPED WITH A HOLE PATTERN SEAL
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IMPROVING THE DESIGN OF A HIGH PRESSURE CASING WITH THE HELP OF FINITE ELEMENT ANALYSIS TO ENSURE THE ROTOR DYNAMIC STABILITY OF A HIGH PRESSURE CENTRIFUGAL COMPRESSOR EQUIPPED WITH A HOLE PATTERN SEAL

机译:借助有限元分析改善高压壳体设计,以确保高压离心压缩机的转子动态稳定性,配备孔图案密封件

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This paper focuses on the casing geometry of High Pressure Compressors. It is common practice to use damper seals, typically the hole pattern type, at the balance piston to ensure the stability of the compressor when compressing fluids with high density levels. Special attention must be paid to the clearance of the hole pattern seal which must be kept convergent at all operating conditions because a clearance divergence can lead to a rotor dynamic instability of the compressor. Furthermore, the clearance must be kept as low as possible to reduce the leakage losses through the balance piston. Therefore, extensive Fine Element Analyses are performed to determine the mechanical casing deflections in operation and hence, the correct clearance behaviour of such damper seals. This paper discusses the history of the casing design during the last ten years and compares the configurations with respect to the clearance distribution along the damper seal length. To validate the analytical predictions, leakage and stability measurements (using a magnetic shaker) are performed for these high pressure compressors during the full-load, full-pressure testing. This paper presents the stability measurements carried out on two compressors (390 bar and 655 bar discharge pressure) and compares the results.
机译:本文侧重于高压压缩机的套管几何形状。常见的做法是使用阻尼密封件,通常是孔图案类型,在平衡活塞处,以确保当压缩具有高密度水平的流体时压缩机的稳定性。必须特别注意孔图案密封的间隙,这在所有操作条件下必须保持会聚,因为间隙发散可能导致压缩机的转子动态不稳定。此外,必须保持间隙尽可能低,以通过平衡活塞减少泄漏损失。因此,进行广泛的细型元素分析以确定操作中的机械壳体偏转,因此,这种阻尼密封件的正确间隙行为。本文讨论了在过去十年期间壳体设计的历史,并比较了沿着阻尼器密封长度的间隙分布的配置。为了验证分析预测,在满载的全压测试期间对这些高压压缩机进行泄漏和稳定性测量(使用磁力振动器)。本文介绍了两个压缩机(390杆和655巴放电压力)上进行的稳定测量,并比较了结果。

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