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首页> 外文期刊>Journal of Fluids and Structures >Galloping of square cylinders in cross-flow at low Reynolds numbers
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Galloping of square cylinders in cross-flow at low Reynolds numbers

机译:在低雷诺数下横流疾驰的方圆柱体

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摘要

Galloping of square cylinders is studied at low values of the Reynolds number using a two-dimensional finite element method. A sinusoidal quasi-steady model allows determination of the occurrence of galloping and its amplitude. Parameters of this model are obtained via FEM unsteady simulations at different angles of incidence between 0° and 10°. The model efficiency is validated by comparing its predictions to those of unsteady simulations of fluid-structure interaction of a spring mounted square constrained to move in the direction transverse to the flow. Results show that the model yields good predictions of both the onset of galloping and its amplitude as a function of the Reynolds number at high values of the mass ratio. However, the quasi-steady model fails to reproduce the sudden change of amplitudes observed in finite element simulations at mass ratios below a critical value. Modifications to the model are introduced to reproduce this low mass ratio effect.
机译:使用二维有限元方法研究了雷诺数小的下方柱的舞动。正弦准稳态模型可以确定舞动的发生及其幅度。该模型的参数是通过FEM非稳态仿真在0°和10°之间的不同入射角获得的。通过将模型的预测结果与安装在弹簧上的正方形的流体-结构相互作用的非稳态仿真的预测结果进行比较,从而验证了模型效率,该模型被约束沿横向于流动方向移动。结果表明,在高质量比值的情况下,该模型可以很好地预测舞动的开始及其幅度与雷诺数的关系。但是,准稳态模型无法重现质量比低于临界值的有限元模拟中观察到的振幅突然变化。引入了对模型的修改以重现这种低质量比的效果。

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