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A fluidelastic model for the dynamics of cantilevered plates with an additional spring support in axial flow

机译:悬臂板动力学的流弹模型,带有附加的轴向弹簧支撑

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A fluidelastic model has been developed for studying the dynamics of cantilevered plates in axial flow, with an additional spring support at the plate trailing edge. The plate is supposed to be two-dimensional; a nonlinear equation of motion based on the inextensibility condition is used to account for the possible large vibration amplitude. For the fluid-dynamic part, an unsteady lumped vortex model is used for calculating the fluid loads acting on the plate undergoing deformation; the longitudinal displacement of the plate associated with lateral motions is also taken into account. The fluidelastic model is first validated through comparisons with experimental data published for systems without the spring support; it is then used to investigate the dynamics of cantilevered plates in axial flow with an additional spring support at the plate trailing edge. Some interesting results of the dynamics of the fluid-structure system are presented.
机译:已经开发了一种流体弹性模型来研究悬臂板在轴向流动中的动力学,并在板的后缘处附加了弹簧支撑。该板应该是二维的。使用基于不可扩展性条件的非线性运动方程式来说明可能的大振动幅度。对于流体动力部分,使用非定常集总涡流模型来计算作用在变形板上的流体载荷。还考虑了与横向运动相关的板的纵向位移。首先通过与发布的无弹簧支撑系统的实验数据进行比较来验证流体弹性模型。然后用它来研究悬臂板在轴向流动中的动力学,并在板的后缘附加一个弹簧支撑。提出了一些有趣的流体结构系统动力学结果。

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