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Numerical investigation of flow around circular cylinder with splitter plate

机译:带分流板的圆柱绕流流动的数值研究

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摘要

The flow around a single circular cylinder with splitter plate was investigated using Computational Fluid Dynamics. The present study investigated the effects of varying splitter plate length and the Reynolds numbers on flow characteristic, such as vortex shedding, drag force, lift force, separation point, pressure, and friction coefficients of the cylinder. It was revealed that the vortex shedding behind cylinder is completely suppressed when the splitter plate length is longer than the critical value, which is proportional to the Reynolds number. The variation of drag and lift coefficients with respect to splitter length can be classified into two patterns of a monotonic decrease and a general decrease but with small increase. We found that the first pattern occurs at Reynolds number aecurrency sign 180 and higher Reynolds number gives the second pattern. When the splitter plate length is similar to the diameter of the cylinder, the vortex frequency, drag, and lift coefficients reach local minimum depending on the Reynolds number. A functional relationship between drag coefficient, length of splitter plate, and Reynolds number was determined.
机译:使用计算流体动力学研究了带有分隔板的单个圆柱周围的流动。本研究研究了不同的分流板长度和雷诺数对流动特性的影响,例如涡旋脱落,拖曳力,升力,分离点,压力和气缸的摩擦系数。结果表明,当分流板的长度长于与雷诺数成正比的临界值时,可以完全抑制圆柱体后方的涡流脱落。阻力系数和升力系数相对于分离器长度的变化可以分为单调减小和一般减小但增大很小的两种模式。我们发现第一个模式出现在雷诺数出现标志180处,更高的雷诺数给出第二个模式。当分隔板的长度与圆柱体的直径相似时,取决于雷诺数,涡旋频率,阻力和升力系数达到局部最小值。确定了阻力系数,分隔板的长度和雷诺数之间的函数关系。

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