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Numerical investigation on the ground speed effect around a square cylinder near the ground

机译:靠近地面的方形圆柱体附近地面速度效应的数值研究

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The unsteady flow field around a square cylinder is investigated by solving the two-dimensional Reynolds-averaged Navier-Stokes equations with epsilon-SST turbulence model at Re = 20,000 with changes of gap height, from G/D = 0.1 to G/D = 2.0, and ground speed, from 0 to U infinity, respectively. Through analysis on the vortex strength, lift and drag coefficients, and the Strouhal number of a square cylinder, it is found out that the separation bubble located on the ground behind a square cylinder is the core reason which makes significant differences of flow characteristics between the stationary and moving ground. Also the separation bubble seems to prevent the sharp transition from steady flow to periodic vortex shedding.
机译:通过用ε-SST湍流模型求解二维Reynolds平均Navier-Stokes方程,研究间隙为R的间隙高度从G / D = 0.1到G / D =的变化,从而研究了方形圆柱周围的非恒定流场。 2.0和地面速度,分别从0到U无限。通过对方筒的涡流强度,升力和阻力系数以及Strouhal数的分析,发现位于方筒后面的地面上的分离气泡是造成方筒之间流动特性显着不同的核心原因。固定和移动的地面。同样,分离气泡似乎阻止了从稳定流动到周期性涡旋脱落的急剧转变。

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