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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Vibration analysis of a complex fluid-conveying piping system with general boundary conditions using the receptance method
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Vibration analysis of a complex fluid-conveying piping system with general boundary conditions using the receptance method

机译:具有接收方法的一般边界条件具有络合流体输送管道系统的振动分析

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摘要

In this paper, a new set of six-variable linear partial differential equations of motion of fluid-conveying pipes with general boundary conditions are derived using the Hamilton principle and these equations are solved by the receptance method. The frequencies of the straight pipes conveying fluid with or without elastic supports are determined and the results are compared with experimental ones. Then a fluid-conveying, semi-circular pipe and complex piping system with different kinds of boundary conditions are studied. These pipes are divided into some straight pipe units and are assembled using the receptance method. The numerical results show that the receptance method is efficient for pipes with arbitrary geometrical layouts and support types, and once the dynamic receptance of the elastic support of a piping system is obtained via experiment, its dynamic stability at different fluid velocities can be analysed by the receptance method.
机译:在本文中,使用Hamilton原理推导出具有一般边界条件的流体输送管的新的六种可变线性部分微分方程,并通过接收方法解决这些方程。 确定具有或不具有弹性支撑件的直管输送流体的频率,并将结果与实验结果进行比较。 然后,研究了具有不同种类边界条件的流体输送,半圆形管和复杂的管道系统。 这些管子分成一些直管单元,并使用接收方法组装。 数值结果表明,接收方法对于具有任意几何布局和支撑类型的管道是有效的,并且一旦通过实验获得了管道系统的弹性支撑的动态接收,就可以通过实验获得其不同流体速度下的动态稳定性 接收方法。

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