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Dynamic behavior of a fluid conveying pipe subjected to a moving sprung mass - An FEM-state space approach

机译:承受弹簧运动的流体输送管的动态行为-有限元状态空间法

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In this paper, the dynamic behavior of a pipe conveying fluid, with a sprung mass moving on it is studied. The governing equation is obtained in the transverse and longitudinal directions based on the nonlinear Von-Karman sense, by which large displacements may be taken into account. The effect of rotary inertia is also considered. Using the Galerkin method with appropriate shape functions, the dynamic equations are discretized spatially. In developing the equations of motion, a nonsymmetric damping matrix emerges due to the Coriolis effect. As a result, the eigen-values (damped natural frequencies) and eigenvectors (mode shapes) are to be obtained by the state-space method. First, only the effect of fluid flow is considered, and the results obtained show good agreement with analytical ones under different fluid velocities. After validation of the results, the effect of a moving sprung mass with damping is added to the system, and using the Newmark-β integration scheme, the response of the system is obtained for different moving load and fluid velocities. The results show that moving mass changes the dynamic properties of the system on the one hand, and acts as an external source of force in the vibration the system on the other.
机译:在本文中,研究了在装有弹簧的情况下输送流体的管道的动态行为。基于非线性Von-Karman方向在横向和纵向上获得控制方程,通过该方程可以考虑大的位移。还考虑了旋转惯性的影响。使用具有适当形状函数的Galerkin方法,可以在空间上离散动力学方程。在制定运动方程式时,由于科里奥利效应,出现了非对称阻尼矩阵。结果,将通过状态空间方法获得本征值(衰减的固有频率)和本征矢量(模式形状)。首先,仅考虑流体流动的影响,并且在不同流体速度下获得的结果与分析结果显示出良好的一致性。在对结果进行验证之后,将带有阻尼的运动簧载质量的影响添加到系统中,并且使用Newmark-β积分方案,获得了针对不同运动负载和流体速度的系统响应。结果表明,运动质量一方面会改变系统的动力学特性,另一方面会成为系统振动的外部力源。

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