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Large-Eddy Simulation and Mechanism of Secondary Instability of Flow around a Cylinder

机译:气缸周围流动次级不稳定性的大涡流模拟和机理

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Flow around a circular cylinder is simulated with large-eddy simulation at Re=200,and the mechanism of the origin of secondary vortex street is studied.The results show that the vortex street generated in the cylinder wake disappears as the flow moves downstream.Then,secondary instability occurs in the far wake of the cylinder after the primary vortex street dying away.The processes of the first instability and the secondary instability in the cylinder wake are recorded in the simulation.With these,instability of the entire flow field is studied with the energy gradient method It is found that it is the high mechanical energy gradient generated in the wake by the zero velocity gradient that leads to the instability.As the vortex developing at rear of the cylinder,the value of the energy gradient function becomes low,which leads to the vortex dying away.In the downstream,the value of the energy gradient function is enlarged again due to perturbation,which leads to the secondary instability,as the flow moving further in far wake of the cylinder.It can be concluded that the interaction of the variation of the value of the energy gradient function and the perturbation leads to the secondary instability.
机译:在Re = 200的大涡模拟中模拟圆柱体周围的流动,并且研究了次级涡流街的起源机制。结果表明,随着流动下游,气缸醒来的涡流街消失。在初级涡流街消除后汽缸之后发生次要的不稳定性。在仿真中记录了第一不稳定性和汽缸尾部中的次要不稳定性的过程。在这些情况下,研究了整个流场的不稳定性利用能量梯度方法发现,通过零速度梯度在导致不稳定性的零速度梯度中产生的高机械能梯度。在气缸后部的涡流发展,能量梯度函数的值变低,这导致涡旋消亡。在下游,由于扰动,能量梯度函数的值再次扩大,从而导致次要instabil作为流动移动的流动进一步在汽缸的尾唤醒中。可以得出结论,能量梯度函数的值的变化和扰动导致次级不​​稳定性的相互作用。

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