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Natural frequency and stability analysis of a pipe conveying fluid with axially moving supports immersed in fluid

机译:具有轴向移动支架的管道输送流体的固有频率和稳定性分析,浸入流体中的轴向移动支撑件

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Structural model for a slender and uniform pipe conveying fluid, with axially moving supports on both ends, immersed in an incompressible fluid, is formulated. Free vibration and stability of the system are studied through numerical calculation. First, the equations of motion of the system are derived in an absolute coordinate system. An "axial added mass coefficient" is adopted to amend the forces caused by the external fluid. Boundary conditions are fixed by using coordinated conversion. Then, numerical results of the natural frequency are obtained via the Galerkin method, both for pinned-pinned and clamped-clamped supports. The critical speeds of supports and several instability types are discussed. Last, the effects of the system parameters on the dynamics and instability of the system are investigated. (C) 2017 Elsevier Ltd. All rights reserved.
机译:制定浸没在不可压缩流体中的两端的纤细和均匀管道输送流体的结构模型,其两端浸入不可压缩的流体中。 通过数值计算研究了系统的自由振动和稳定性。 首先,派生系统的运动方程在绝对坐标系中得出。 采用“轴向添加质量系数”来修改由外部流体引起的力。 通过使用协调转换来固定边界条件。 然后,通过Galerkin方法获得自然频率的数值结果,用于固定固定夹住和夹紧夹紧的支撑件。 讨论了支持和若干不稳定类型的临界速度。 最后,研究了系统参数对系统动力学和不稳定性的影响。 (c)2017 Elsevier Ltd.保留所有权利。

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