The Vibration Analysis of Pressure Pipelines in Model of Adding Water Mass

W. He, S. Chang
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Abstract

According to the safety problems of vibration in high-lift pumping station pressure pipeline, Proposed use the approach of additional water mass, It has established the numerical model of pumping station pressure pipeline based on fluid-structure interaction, To identify the different working conditions modal parameters of Jingtai irrigated area’s pressure pipeline in the stage 2# pump station and the deformation of displacement. To analyse the pressure pipelines of vibration. From the result of numerical simulation:Pressure pipeline is the most easy to stimulate the vibration at the inlet pipe and outlet pipe, in no.4 machine, the vibration amplitude of the High order modal mode of the vibration is bigger than low-order modal vibration mode. And increased along with the order, the outlet pipe which not easy to vibrate is gradually produce vibration deformation. But whether the machine feed line 8 open or not to the whole impact of pipeline vibration is not large. the results of numerical simulation analysis of finite element and the results measured by experiment are basically identical. So the quality model method of the additional water is simple in calculation, and the result is reliable, It has a certain advantage in the pressure pipe of pumping station of fluid-solid coupling simulation applications.
加水模型下压力管道振动分析
针对高扬程泵站压力管道振动安全问题,提出采用附加水质量的方法,建立了基于流固耦合的泵站压力管道数值模型,识别了景台灌区2#泵站压力管道不同工况的模态参数及位移变形。对压力管道的振动进行分析。从数值模拟的结果来看:压力管道在进、出口管道处最容易受到振动的刺激,在非压力管道处最容易受到振动的刺激。4 .机器的振动幅值高阶模态的振动大于低阶模态的振动。并且随着阶数的增加,不易振动的出水管逐渐产生振动变形。但机器进料管路8开不开对整个管路振动的影响不大。有限元数值模拟分析结果与实验测量结果基本一致。因此,附加水质量模型方法计算简单,结果可靠,在泵站压力管道的流固耦合仿真应用中具有一定的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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