首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >WAKE-BOUNDARY LAYER INTERACTIONS BEHIND A SQUARE CYLINDER FOR A REYNOLDS NUMBER IN PERIODIC VORTEX SHEDDING REGIME
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WAKE-BOUNDARY LAYER INTERACTIONS BEHIND A SQUARE CYLINDER FOR A REYNOLDS NUMBER IN PERIODIC VORTEX SHEDDING REGIME

机译:周期性涡旋切角系统中雷管数在方圆柱后面的边界层相互作用

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Flow over a square cylinder in proximity to a wall for different gap-to-diameter ratios (G/D = 0 to 2, where G is the gap between the cylinder and flat plate and D is the side of the square cylinder) has been studied extensively for a Reynolds Number (Re = U_∞D/v, where v is the kinematic viscosity of the fluid and U_∞ is the free stream velocity) in the periodic vortex shedding regime. Ansys Fluent is used to solve two-dimensional (2-D), time dependent, incompressible Navier-Stokes equation by SIMPLE algorithm implemented in finite volume method. Interesting flow features and changes in vortex dynamics can be seen by the present simulation, when the cylinder approaches very close to the plate. The boundary layer formed over the flat plate changes its characteristics for these low gap-ratios. Also the modification of the aerodynamic forces and the vortex shedding frequency are thoroughly described to understand the physics behind wake-boundary layer interaction at low Reynolds Number.
机译:对于不同的间隙直径比(G / D = 0到2,其中G是圆柱体和平板之间的间隙,D是正方形圆柱体的侧面),流过方形圆柱体的位置接近壁。研究了周期性涡旋脱落形式中的雷诺数(Re =U_∞D/ v,其中v是流体的运动粘度,U_∞是自由流速度)。 Ansys Fluent通过有限体积方法中实现的SIMPLE算法来求解二维(2-D),时间相关,不可压缩的Navier-Stokes方程。当圆柱体非常靠近板时,通过本模拟可以看到有趣的流动特征和涡旋动力学的变化。对于这些低间隙比,形成在平板上的边界层改变了其特性。此外,还详细描述了空气动力和涡旋脱落频率的变化,以了解低雷诺数时尾流边界层相互作用背后的物理原理。

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