Influence of Boundary Conditions on the Accuracy of Pulsation Dampers Characteristics in Analytical Models

IF 0.7 Q4 ENGINEERING, MECHANICAL
U. Warzyńska, T. Siwulski
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引用次数: 1

Abstract

A pressure pulsation phenomenon in positive displacement machinery and resulting from that noise and vibration problems are well-known and still unsolved issues. The article concerns modeling pressure pulsation dampers used for fluid machinery, in particular in gas systems. The currently used mathematical models based on the plane wave theory are verified in the special laboratory conditions with no flow and no wave reflections at the system outlet. The use of a compressor as an excitation source significantly influences the characteristics of a damper installed in a system. In this study, a measurement of common type dampers transmission loss characteristics with the use of pressure transducers is proposed. The article discusses the influence of boundary conditions in analytical models based on the plane wave theory on the accuracy of dampers characteristics. Basing on the measurements results some improvements in the analytical model are proposed.
边界条件对解析模型中脉动阻尼器特性精度的影响
容积式机械中的压力脉动现象及其引起的噪声和振动问题是众所周知的,但仍未解决。本文涉及流体机械,特别是气体系统中使用的压力脉动阻尼器的建模。目前使用的基于平面波理论的数学模型在特殊的实验室条件下进行了验证,系统出口处没有流动和波浪反射。压缩机作为激励源的使用显著影响安装在系统中的阻尼器的特性。在这项研究中,提出了一种使用压力传感器测量普通型阻尼器传输损耗特性的方法。本文讨论了基于平面波理论的分析模型中边界条件对阻尼器特性精度的影响。在测量结果的基础上,对分析模型进行了改进。
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来源期刊
International Journal of Fluid Power
International Journal of Fluid Power ENGINEERING, MECHANICAL-
CiteScore
1.60
自引率
0.00%
发文量
16
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