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Numerical simulation of rivulet evolution on a horizontal cable subject to an external aerodynamic field

机译:受外部空气动力场影响的水平电缆上小溪流演化的数值模拟

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摘要

On wet and windy days, the inclined cables of cable-stayed bridges may experience a large amplitude oscillation known as rain-wind-induced vibration (RWIV). It has previously been shown by in situ and wind-tunnel studies that the formation of rain-water accumulations or ‘rivulets’ at approximately the separation points of the external aerodynamic flow field and the resulting effect that these rivulets have on this field may be one of the primary mechanisms for RWIV. A numerical method has been developed to undertake simulations of certain aspects of RWIV, in particular, rivulet formation and evolution. Specifically a two-dimensional model for the evolution of a thin film of water on the outer surface of a horizontal circular cylinder subject to the pressure and shear forces that result from the external flow field is presented. Numerical simulations of the resulting evolution equation using a bespoke pseudo-spectral solver capture the formation of two-dimensional rivulets, the geometry, location and growth rate of which are all in good agreement with previous studies. Examinations of how the distribution and magnitude of aerodynamic loading and the Reynolds number influence the rivulet temporal evolution are undertaken, the results of which indicate that while all three affect the temporal evolution, the distribution of the loading has the greatest effect.
机译:在潮湿的大风天,斜拉桥的倾斜电缆可能会遇到大振幅振荡,称为雨风感应振动(RWIV)。先前已经通过原位和风洞研究表明,雨水积聚或“小溪”大约在外部空气动力流场的分离点处形成,这些小溪对这一场产生的影响可能是RWIV的主要机制。已经开发出一种数值方法来进行RWIV某些方面的仿真,特别是小溪的形成和演化。具体地,提出了二维模型,该模型用于在水平圆柱体的外表面上经受从外部流场产生的压力和剪切力时水薄膜的析出。使用定制的伪谱解算器对生成的演化方程进行数值模拟,可以捕获二维铆钉的形成,这些二维铆钉的几何形状,位置和增长率均与以前的研究相吻合。研究了空气动力载荷的分布和大小以及雷诺数如何影响小溪的时间演变,结果表明尽管这三个因素都影响了时间演变,但载荷分布的影响最大。

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