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Drag and inertia coefficients for a circular cylinder in steady plus low-amplitude oscillatory flows

机译:循环加上低幅度振荡流动的圆柱体的拖动和惯性系数

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Computer simulations of steady plus low -amplitude oscillatory flow about a circular cylinder are reported at a fixed Reynolds number of 150 based on the steady component. The conventional Keleugan-Carpenter number based on the oscillatory component is fixed at pi/5. The oscillation frequency is varied so as to study a wide spectrum of flows where inertial forces dominate at one end and viscous drag forces at the other as a function of the modified Keleugan-Carpenter number. The hydrodynamic force on the cylinder in-line with the flow direction is represented by Morison's equation and an extended version with three terms. The drag and inertia coefficients in Morison's equation are determined by least-squares fits to data directly computed from integration of skin friction and pressure distributions around the periphery of the cylinder. The root-mean-square value of the residue of reconstructed minus directly computed forces varies between 2 and 41% depending on the flow parameters. Comparable results can be obtained with a semi-theoretical approach using inviscid inertia and quasi-steady viscous drag terms. Physical explanations for the variation of the force coefficients are provided and implications for pertinent flow-structure interactions are discussed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:基于稳定部件的固定雷诺数为150,在圆柱体上报告了稳定加上低级振荡流的计算机模拟。基于振荡组分的常规克莱甘 - 木匠数固定在PI / 5。变化振荡频率,以研究宽频谱的流程,其中惯性力在一端支配在一端和粘性阻力等于另一种函数,作为改性的克莱瓦甘植物数量。气缸上的流体动力力与流动方向在线上由Morison的等式和具有三个术语的扩展版本表示。 Morison等式中的阻力和惯性系数由最小二乘拟合到直接从圆筒周边的周边的皮肤摩擦和压力分布直接计算的数据决定。根据流量参数,重建的减去直接计算力的残留物的根平均方值在2至41%之间变化。可比较的结果可以通过使用缺陷惯性和准稳定的粘性阻力来获得半理论方法。提供了用于力系数的变化的物理说明,并讨论了对相关的流动结构相互作用的影响。 (c)2017 Elsevier Ltd.保留所有权利。

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