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Fluid-Structure Interaction of Circular Cylinder Flow with Bidirectional Splitter Plates

机译:双向分离板圆形圆柱体流体的流体结构相互作用

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Flow past a circular cylinder is a classical topic in ocean engineering application, such as the marine riser, oil pipeline, etc. When the ocean current flows around cylinder structures, shedding vortices will appear alternately in the wake of the cylinder at a certain Reynolds number, which is harmful to the service life of ocean engineering structures. Among the abundant active and passive methods of flow control, the splitter plate behind the circular cylinder is a popular choice to improve the flow field of the circular cylinder. It should be noted that the motions of the splitter plate are neglected because most of the present studies treat the splitter plate as rigid body. Therefore, the Fluid-Structure Interaction (FSI) effect between the fluid and the splitter plate is taken into account in the present study. What's more, a new idea with bidirectional splitter plates are proposed to improve the flow field with beneficial effects. Correspondingly, the relationships between the ratios of RMS lift and mean drag coefficients by original circular cylinder with different configurations of the splitter plate are given.
机译:流过一个圆柱形是海洋工程应用中的经典主题,如海上提升管,石油管道等。当海流在圆筒结构周围流动时,脱落涡流将在一定的雷诺数瓶子尾机上交替出现,这对海洋工程结构的使用寿命有害。在流量控制的丰富主动和被动方法中,圆筒后面的分离板是改善圆柱体的流场的流行选择。应注意,忽略了分离板的动作,因为大多数本研究将分离板作为刚体处理。因此,在本研究中考虑了流体和分离板之间的流体结构相互作用(FSI)效应。更重要的是,建议使用双向分离板的新想法,以改善具有有益效果的流场。相应地,给出了RMS升力与平均循环系数与具有不同配置的分配板的原始圆筒的平均拖曳系数之间的关系。

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