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The effects of axis ratio on laminar fluid flow around an elliptical cylinder

机译:轴比对椭圆圆柱绕层流的影响

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An elliptical cylinder is a generic shape which represents a flat plate at its minor to major axis ratio (AR) limits of zero and infinity, and a circular cylinder at AR of unity. While incompressible flows over a streamwise flat plate (AR = 0), a cross-stream flat plate (AR = ∞), and a circular cylinder have been studied extensively, the role of AR on the detailed flow structure is still not well understood. Therefore, a numerical study was conducted to examine the flow field around an elliptical cylinder over a range of ARs from 0.3 to 1, with the major axis parallel to the free-stream, at a Reynolds number of 40 based on the hydraulic diameter. The control volume approach of FLUENT was used to solve the fluid flow equations, assuming the flow over the cylinder is unbounded, steady, incompressible and two-dimensional. It has been found that a pair of steady vortices forms when AR reaches a critical value of 0.34; below this value no vortices are formed behind the elliptical cylinder. Various wake parameters, drag coefficient, pressure and velocity distributions, have been characterized as functions of AR. The wake size and the drag coefficient are found to increase with the increase of AR. Quadratic correlations have been obtained to describe the relations of wake length and drag coefficient with axis ratio.
机译:椭圆圆柱体是一种通用形状,代表其零长轴和长轴比(AR)极限为零和无穷大的平板,而AR等于1的圆柱体。虽然不可压缩的流动在流向平板(AR = 0),横流平板(AR =∞)和圆柱体上已得到了广泛的研究,但AR在详细的流结构上的作用仍未得到很好的理解。因此,进行了数值研究,以检查在椭圆比为0.3到1的范围内,椭圆轴周围的流场,主轴平行于自由流,基于水力直径的雷诺数为40。 FLUENT的控制体积方法用于求解流体流动方程,假设汽缸上的流动是无界的,稳定的,不可压缩的并且是二维的。已经发现,当AR达到0.34的临界值时,会形成一对稳定的涡流。低于该值,在椭圆圆柱体后方不会形成涡旋。各种尾流参数,阻力系数,压力和速度分布已被表征为AR的功能。发现尾随尺寸和阻力系数随着AR的增加而增加。已获得二次相关来描述尾流长度和阻力系数与轴比的关系。

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