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首页> 外文期刊>Journal of Mechanical Science and Technology >Vibration analysis of compressor piping system with fluid pulsation
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Vibration analysis of compressor piping system with fluid pulsation

机译:带有流体脉动的压缩机管路系统的振动分析

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A piping system connected to a rotary compressor is an essential component for refrigerant transport in air-conditioning systems. The vibration of the pipes has been thought to be generated only by the mechanical forces due to the compressor operation. In this study, the fluid pulsation in the pipe is considered to be a source of the vibration, as well as the mechanical forces by the compressor operation. The mechanical force was first identified experimentally using measured acceleration signals over the shell. The calculation of the fluid force resulting from the pulsating fluid in the pipe was then derived theoretically. The estimation used the pressure pulsation signal in the pipe measured by a pressure transducer. Both sources of the vibration were finally applied to the finite element model of the piping system. Conclusively, the prediction of the vibration response to both sources showed better agreement with the experimental results than prediction considering only the mechanical force. Therefore the theoretical process deriving the fluid force was valid.
机译:连接到旋转式压缩机的管道系统是空调系统中制冷剂运输的基本组成部分。人们认为,管道的振动仅由压缩机运行引起的机械力产生。在这项研究中,管道中的流体脉动被认为是振动以及压缩机运行产生的机械力的来源。首先使用壳上测得的加速度信号通过实验确定机械力。然后从理论上推导了由管中脉动流体产生的流体力的计算。该估计使用由压力传感器测量的管道中的压力脉动信号。两种振动源最终都应用于管道系统的有限元模型。总之,与仅考虑机械力的预测相比,对这两个源的振动响应的预测显示出与实验结果更好的一致性。因此,推导流体力的理论过程是有效的。

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