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Effects of wall suction/blowing on two-dimensional flow past a confined square cylinder

机译:壁面抽吸/吹气对通过受限方形圆柱体的二维流动的影响

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摘要

A numerical simulation is conducted to study the laminar flow past a square cylinder confined in a channel (the ratio of side length of the square to channel width is fixed at 1/4) subjected to a locally uniform blowing/suction speed placed at the top and bottom channel walls. Governing equations with boundary conditions are resolved using a finite volume method in pressure–velocity formulation. The flow patterns relevant to the critical spacing values are investigated. Numerical results show that wall blowing has a stabilizing effect on the flow, and the corresponding critical Reynolds number increases monotonically with increasing blowing velocity. Remarkably, steady asymmetric solutions and hysteretic mode transitions exist in a certain range of parameters (Reynolds number and suction speed) in the case of suction.
机译:进行数值模拟,以研究流经顶部的局部均匀吹气/吸气速度的流经封闭在通道中的方筒的流动(方形的边长与通道宽度的比固定为1/4)和底部通道壁。具有边界条件的控制方程在压力-速度公式中使用有限体积法求解。研究了与临界间距值有关的流型。数值结果表明,壁吹对流动具有稳定作用,并且相应的临界雷诺数随吹速的增加而单调增加。明显地,在吸力的情况下,在一定范围的参数(雷诺数和吸力速度)中存在稳定的不对称解和滞后模式转变。

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