Analysis of fluid-structure interaction vibration response for vibration system excited by wave exciter

Kou Ziming, Wei Xiuye, Wu Juan, Zhang Huixian
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引用次数: 2

Abstract

The hydraulic vibration system excited by wave exciter is established. After analysis on Poisson coupling and Junction coupling in excited vibration system 4-eqation dynamics model on liquid flowing, pressure fluctuation and pipe vibration is adopted, and numerical analysis of fluid–solid coupled vibration system excited by wave exciter is carried out by using method of characteristics. The results of numerical analysis show that pressure wave velocity is descending, and vibration periodicity prolongs because of Poisson coupling; at the same time, stress wave velocity of pipe is increasing, and vibration periodicity is shortened. The results of numerical analysis agree with those of experiment.
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受激振器激励的振动系统流固耦合振动响应分析
建立了由激振器激励的液压振动系统。在分析了受激振动系统中的泊松耦合和结耦合的基础上,采用了流体流动、压力波动和管道振动的四方程动力学模型,采用特征值法对受激振器激励的流固耦合振动系统进行了数值分析。数值分析结果表明,由于泊松耦合,压力波速度下降,振动周期延长;同时,管道的应力波速增大,振动周期缩短。数值分析结果与实验结果吻合较好。
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