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Vibration and stability of an axially moving beam immersed in fluid

机译:浸入流体中的轴向移动梁的振动和稳定性

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摘要

Vibration and stability are investigated for an axially moving beam in fluid and constrained by simple supports with torsion springs. The equations of motion of the beam with uniform circular cross-section, moving axially in a horizontal plane at a known rate while immersed in an incompressible fluid are derived first. An "axial added mass coefficient" and an initial tension are implemented in these equations. Based on the Differential Quadrature Method (DQM), a solution for natural Frequency is obtained and numerical results are presented. The effects of axially moving speed, axial added mass coefficient, and several other system parameters on the dynamics and instability of the beam are discussed. Particularly, natural frequency in terms of the moving speed is presented for fixed-fixed, hinged-hinged and hybrid supports with torsion spring. It is shown that when the moving speed exceeds a certain value, the beam becomes subject to buckling-type instability. The variations of the lowest critical moving speed with several key parameters are also investigated. (C) 2007 Elsevier Ltd. All rights reserved.
机译:研究了在流体中轴向运动的梁的振动和稳定性,并通过带有扭簧的简单支架进行了约束。首先推导具有均匀圆形横截面的梁的运动方程,该方程在水平平面内沿轴向以已知速率运动,同时浸入不可压缩的流体中。在这些方程式中实现“轴向附加质量系数”和初始张力。基于差分正交方法(DQM),获得了固有频率的解并给出了数值结果。讨论了轴向移动速度,轴向附加质量系数和其他几个系统参数对梁的动力学和不稳定性的影响。特别是对于带有扭力弹簧的固定,铰接和混合支撑,给出了根据运动速度的固有频率。结果表明,当移动速度超过一定值时,光束会发生屈曲型不稳定性。还研究了最低临界移动速度随几个关键参数的变化。 (C)2007 Elsevier Ltd.保留所有权利。

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