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Finite element analysis of vortex shedding oscillations from cylinders in the straight channel

机译:直线通道中圆柱体涡旋脱落振荡的有限元分析

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In this paper a GCL (Geometry Conservation Law) – preserving finite element model is developed to simulate the fluid-structure interaction phenomena. The boundary locations are part of the solution procedures. Within the moving grid framework, the employed numerical method involves the operator splitting technique, balance tensor diffusivity (BTD), Runge-Kutta time-stepping method, and an element-by-element conjugate gradient iterative solver. Flows around a self-vibrating cylinder and elastically supported cylinders are investigated to validate the present method. The simulated results agree well with available data in the literature. The lock-in phenomenon that may cause the unstable motion of cylinders is also revealed. It is significant from the simulated 2×2 four cylinders result that the rear two cylinders approach to each other at a time earlier than the front two ones.
机译:本文建立了一个GCL(几何守恒定律)-保有限元模型来模拟流固耦合现象。边界位置是解决程序的一部分。在移动网格框架内,采用的数值方法涉及算子分裂技术,平衡张量扩散率(BTD),Runge-Kutta时间步长方法以及逐元素共轭梯度迭代求解器。研究了自振缸和弹性支承缸周围的流动,以验证本方法。模拟结果与文献中的可用数据非常吻合。还揭示了可能导致气缸不稳定运动的锁定现象。从模拟的2×2四个圆柱体得出的结果很重要,即后两个圆柱体比前两个圆柱体更早彼此接近。

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