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Numerical investigation of the coupled interaction between an unsteady aerodynamic flow field and a water film coating on a circular cylinder

机译:不稳定空气流场与圆柱体水膜涂层耦合相互作用的数值研究

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摘要

Rain-wind induced vibration is an aeroelastic phenomenon that occurs on the inclined cables of cable-stayed bridges and arises due to the interaction between the unsteady wind loading and the formation of water rivulets on the cable surface. A new numerical method has been developed at the University of Strathclyde to simulate the influence of the external flow field on the rivulet dynamics and vice versa. The approach is to couple a Discrete Vortex Method solver to determine the external flow field and unsteady aerodynamic loading, and a pseudo-spectral solver based on lubrication theory to model the evolution and growth of the water rivulets on the cable surface under external loading. Results of this coupled model are presented, to provide detailed information on the development of water rivulets and their interaction with the aerodynamic field. In particular, the effect of the initial water film thickness and the angle of attack in plane on the resulting rivulets are investigated. The results are consistent with previous full scale and experimental observations with rivulets forming on the upper surface of the cable only in configurations where rain-wind induced vibration has been observed. Additionally, the thickness of the lower rivulet is found to be self-limiting in all configurations. The results demonstrate that the model can be used to enhance the understanding of the underlying physical mechanisms of rainwind- induced vibration.
机译:雨风引起的振动是一种气动弹性现象,发生在斜拉桥的倾斜电缆上,并且是由于不稳定风载荷与电缆表面上的水小孔形成之间的相互作用而产生的。 Strathclyde大学开发了一种新的数值方法,以模拟外部流场对小溪动力学的影响,反之亦然。该方法是耦合使用离散涡旋法求解器来确定外部流场和非稳态气动载荷,以及耦合基于润滑理论的伪谱求解器,以模拟在外部载荷下电缆表面上水的演变和生长。提出了该耦合模型的结果,以提供有关水小流形的发展及其与空气动力场相互作用的详细信息。特别是,研究了初始水膜厚度和平面攻角对所得小铆钉的影响。结果与先前的完整比例和实验观察结果一致,仅在观察到风雨引起的振动的配置中,在电缆的上表面形成了铆钉。此外,发现在所有配置中下铆钉的厚度都是自限的。结果表明,该模型可用于增强对雨风诱发振动的潜在物理机制的理解。

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