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Locked-on vortex shedding modes from a rotationally oscillating circular cylinder

机译:旋转振荡圆柱体的锁定涡旋脱落模式

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Numerical simulations of unsteady two-dimensional flow around a rotationally oscillating circular cylinder, placed in a uniform cross flow of a constant property Newtonian fluid, are performed at a fixed Reynolds number of 200. The investigation is based on the solutions of stream function-vorticity formulation of Navier-Stokes equations on non-uniform polar grids using a higher order compact (HOC) formulation. The flow field is mainly influenced by Reynolds number, Re, maximum angular velocity of the cylinder, alpha(m), and the frequency ratio, f/f(0), which represents the ratio between the frequency of oscillation, f, and the natural vortex shedding frequency, f(0). The ranges considered for these parameters are 0.5 <=alpha(m)<= 6.0 and 0.50 <= f(0)<= 3.0. The resulting vortex formation modes and lock-on phenomena behind the cylinder as well as the fluid forces acting on the cylinder are analyzed. Occurrence of new multiple lock-on regions is demonstrated in detail by the variation off and alpha(m). The instances of high drag reduction at high values of alpha(m) are confirmed. Comparisons with previous numerical and experimental results verify the accuracy and validity of the present study.
机译:在固定雷诺数为200的情况下,围绕旋转振荡的圆柱体(位于恒定特性的牛顿流体的均匀横流中)进行二维非稳态流动的数值模拟。研究基于流函数涡度的解使用高阶紧凑(HOC)公式在非均匀极坐标网格上建立Navier-Stokes方程。流场主要受雷诺数Re,圆柱的最大角速度alpha(m)和频率比f / f(0)的影响,f / f(0)表示振荡频率f与自然涡旋脱落频率f(0)。这些参数考虑的范围是0.5 <= alpha(m)<= 6.0和0.50 <= f(0)<= 3.0。分析了汽缸后面产生的涡流形成模式和锁定现象,以及作用在汽缸上的流体力。 off和alpha(m)的变化详细说明了新的多个锁定区域的出现。确认了在高alpha(m)值下高减阻的情况。与以前的数值和实验结果进行比较,验证了本研究的准确性和有效性。

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