Experimental and Numerical Investigations of Pipeline with Resonator

T. Pałczyński, K. Kantyka
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引用次数: 1

Abstract

Abstract This article presents the current state of the art regarding the use resonators in straight pipes. There is considerable need to control and reduce pressure pulsation in pipelines supplied with pulsating flows. The use of a Helmholz resonator introduces an additional degree of freedom to the analysed dynamic system. Building on previous experimental investigations by the authors, which identified the nonlinear properties of straight pipes supplied with pulsating flows, this study describes an experimental test rig, measurement methods and mechanical analogies for one (1DOF) and two (2DOF) degrees of freedom. The results are presented in the form of a 3D map of amplitude-frequency characteristics, as a function of the resonator volume determined by piston height. The dynamic properties of the described system are presented as amplitude-phase characteristics, based on a comparison of the numerical and experimental results.
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带谐振腔管道的实验与数值研究
摘要本文介绍了在直管中使用谐振器的现状。在提供脉动流的管道中,有相当大的需要控制和减少压力脉动。Helmholz谐振器的使用为分析的动态系统引入了额外的自由度。在作者之前的实验研究的基础上,本研究确定了脉动流直管的非线性特性,描述了一个(1DOF)和两个(2DOF)自由度的实验测试装置、测量方法和机械模拟。结果以幅频特性的3D图的形式呈现,作为由活塞高度确定的谐振器体积的函数。在比较数值结果和实验结果的基础上,将所描述的系统的动态特性表示为幅相特性。
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Mechanics and Mechanical Engineering
Mechanics and Mechanical Engineering Engineering-Automotive Engineering
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