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Vibration cause analysis and elimination of reciprocating compressor inlet pipelines

机译:振动原因分析和消除往复式压缩机入口管道

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Due to the occurrence of abnormal vibration of reciprocating compressor inlet pipelines during the commissioning of a booster station, the cause of severe vibration problem was investigated, which included modal analysis, calculation of resonant piping length, velocity frequency spectrum analysis, and pressure pulsation measurement. It was found that the inlet pipelines avoided low frequency resonance region, the actual length of the inlet pipelines was in the second resonant piping length, and the pressure pulsation far exceeded API 618 standard. The results indicate that large pressure pulsation and acoustic resonance occurred on the inlet pipelines are the key factors inducing vibration. Vibration elimination treatments included enlarging the buffer volume of gathering manifold, adjusting the inlet piping length to avoid acoustic resonance, and increasing the curvature radius of bend. After remodeling of the inlet pipelines, the test data indicate that the vibration level of the inlet pipelines is reduced to an acceptable level defined by a relevant standard, and the processing capacity of the booster station can be raised at least two times. (C) 2014 Elsevier Ltd. All rights reserved.
机译:由于在增压站调试期间往复式压缩机入口管道发生异常振动,研究了引起严重振动问题的原因,包括模态分析,共振管道长度计算,速度频谱分析和压力脉动测量。结果发现,进气管道避开了低频共振区域,进气管道的实际长度在第二共振管道长度内,压力脉动远远超过API 618标准。结果表明,进口管道上出现大的压力脉动和声共振是引起振动的关键因素。消除振动的方法包括扩大集流歧管的缓冲空间,调整入口管道长度以避免声共振以及增加弯曲的曲率半径。在对进口管道进行改造之后,测试数据表明,进口管道的振动水平已降至相关标准所定义的可接受水平,并且增压站的处理能力可以提高至少两倍。 (C)2014 Elsevier Ltd.保留所有权利。

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