Research on Nonlinear Dynamic Characteristics of Fluid-Conveying Pipes System

Yu Hou, G. Zeng
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引用次数: 1

Abstract

Lateral vibration equations of fluid-conveying pipes system are high order partial differential equations, and the analytic solution is difficult to obtain, so in this paper the numerical solution is obtained by the finite element method. Firstly, the finite element equations of lateral vibration of fluid-conveying pipes were set up, and four kinds of boundary constraints were proposed. The modal analysis of vibration system was carried out by using mode decomposition method, and the system responses were solved by using Newmark method. The impact of pipe span, flow rate, fluid pressure, flow rate disturbance and fluid pressure disturbance on the modes and responses of vibration system were studied. The research results provided theoretical support for the vibration reduction research of fluid-conveying pipes.
流体输送管道系统非线性动态特性研究
流体输送管道系统横向振动方程为高阶偏微分方程,解析解较难求得,本文采用有限元法进行数值求解。首先,建立了流体输送管道横向振动的有限元方程,提出了4种边界约束;采用模态分解法对振动系统进行模态分析,采用Newmark法求解系统响应。研究了管跨、流量、流体压力、流量扰动和流体压力扰动对振动系统模态和响应的影响。研究结果为输送管道减振研究提供了理论支持。
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