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Numerical simulation of two-dimensional laminar unsteady flow past a right trapezoidal cylinder at low Reynolds number: study of sharpening angle, time step, grid independence and domain size

机译:低雷诺数通过右梯形圆柱的二维层流非定常流动的数值模拟:锐化角,时间步长,网格独立性和区域大小的研究

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Numerical simulation of two-dimensional laminar unsteady flow past a right trapezoidal cylinder at low Reynolds number (Re = 100), zero of the flow approaching angle and sharpening angle of the right trapezoidal of 22.5° with a side ratio B/A = 1 are carried out to provide moreapplicable data for engineering design of barred tee in aspect of structural integrity. A finite volume method, non-uniform meshing with second-order implicit time discretization into eight-node quadratic quadrilateral finite elements is employed. An incompressible flow SIMPLEC code with constant fluid properties is used. The convective terms using a third-order QUICK scheme. The numerical simulation result is compared against the published results of flow past a square cylinder. The effect of sharpening angle on the response of the right trapezoidal cylinder is investigated. A special study of the effects of flow on significant factor for time step, grid independence, blockage ratio, domain size, upstream and downstream extents, size domain next to cylinder and size domain extent are performed systematically. The Strouhal number and RMS lift coefficients of fully saturated flow are calculated. The result shown that increasing of sharpening angle, the Strouhal number is negligible changed whilst the RMS lift coefficients significantly increased.
机译:在低雷诺数(Re = 100)下,二维层流非恒定流经过右梯形圆柱体的数值模拟,边比为B / A = 1时,零流接近角和右梯形的锐化角为22.5°为结构设计方面的研究提供了更多适用的数据。采用有限体积方法,将二阶隐式时间离散化为八节点二次四边形有限元的非均匀网格划分。使用具有恒定流体特性的不可压缩流量SIMPLEC代码。对流项使用三阶QUICK方案。将数值模拟结果与公开的流经方形圆柱体的结果进行比较。研究了锐角对右梯形圆柱体响应的影响。系统地研究了流量对时间步长,网格独立性,阻塞率,区域大小,上下游范围,紧挨圆柱的大小域和大小域范围的重要因素的影响的特殊研究。计算出完全饱和流的斯特劳哈尔数和RMS提升系数。结果表明,随着锐角的增加,斯特劳哈尔数的变化可以忽略不计,而RMS升力系数却显着增加。

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