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Interaction between an incompressible flow and elastic cantilevers of circular cross-section

机译:不可压缩流与圆形横截面的弹性悬臂之间的相互作用

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The purpose of this work is to study the deformation of elastic cantilevers due to hydrodynamic forces by coupled fluid-structure interaction simulations. The cantilever is placed in a rectangular duct and the Reynolds number based on bulk velocity and cantilever diameter is 400. Reduced velocities in the range π/4 to 2π are studied, which covers both un-synchronised motion and the initial branch of synchronisation. The cantilever surface is represented by a virtual boundary method which replaces a solid object in flow by additional force distribution to satisfy local boundary condition. The flow field is solved using a Cartesian finite difference code and the deformation of the cylinder a finite element approach using one-dimensional beam elements is used.
机译:这项工作的目的是通过耦合的流固耦合模拟研究由于流体动力产生的弹性悬臂的变形。悬臂放置在矩形管道中,基于体速度和悬臂直径的雷诺数为400。研究了π/ 4到2π范围内的减小的速度,该速度涵盖了不同步运动和同步的初始分支。悬臂表面由虚拟边界方法表示,该方法通过附加力分布代替流动中的固体对象以满足局部边界条件。使用笛卡尔有限差分代码求解流场,使用一维梁单元的有限元方法求解圆柱体的变形。

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