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首页> 外文期刊>Journal of Mechanical Science and Technology >Numerical Study of Fluid Force Reduction on a Circular Cylinder Using Tripping Rods
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Numerical Study of Fluid Force Reduction on a Circular Cylinder Using Tripping Rods

机译:用跳闸杆降低圆柱上流体力的数值研究。

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A numerical investigation on the effects of small tripping rods on the fluid force reduction on a big structure has been carried out using finite volume method where a configuration of a circular cylinder with two small tripping rods symmetrically placed very near to its front surface is studied. The diameter ratio of the rods and the cylinder is set at 0.08, 0.10 and 0.12, and the gap between the rods and the cylinder is fixed at 0.08 of the cylinder diameter. The angular position of the rods varies from 20° to 60°. The effects of the tripping rods on force reduction, vortex shedding frequency and flow separation have been examined for various arrangements of the rods with Reynolds number focused on 200 for laminar flow and 5.5×l0{sup}4 for a turbulent flow. The results reveal that there exits an optimum position where the time averaged force coefficients acting on the cylinder all reach their minimum values and at the same time Strouhal number meets its maximum. At the optimum position the drag coefficient is reduced by 18% for Re=200 and 59% for Re=5.5×l0{sup}4. Further investigation with tripping rods placed near the separation points is also carried out for Re=5.5×l0{sup}4 and a considerable drag reduction is found.
机译:使用有限体积法对小型跳闸杆对减小大结构上的流体力的影响进行了数值研究,其中研究了两个非常靠近其前表面对称放置的两个小型跳闸杆的圆柱体结构。杆和圆柱体的直径比被设置为0.08、0.10和0.12,并且杆和圆柱体之间的间隙被固定为圆柱体直径的0.08。杆的角度位置从20°到60°不等。对于杆的各种布置,已经检查了跳闸杆对力减小,涡流脱落频率和流动分离的影响,其中雷诺数集中于层流的为200,湍流为5.5×10 6。结果表明,存在一个最佳位置,在该位置上,作用在气缸上的时间平均力系数全部达到最小值,同时Strouhal数达到最大值。在最佳位置,对于Re = 200,阻力系数降低18%,对于Re = 5.5×10 {sup} 4,阻力系数降低59%。对于Re = 5.5×10 {sup} 4,还对放置在分离点附近的跳闸杆进行了进一步研究,并且发现了相当大的减阻。

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