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DNS and LES of Passively Controlled Turbulent Backward-Facing Step Flow

机译:被动控制湍流向后步流的DNS和LES

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摘要

A passive control approach (no external energy input) for an unsteady separated flow case was investigated numerically. A surface-mounted control fence was positioned upstream of a backward-facing step, and as an oncoming flow a thin and fully developed turbulent boundary layer with a thickness of δ/h = 0.8 was used. The objective of the passive control was to enhance the entrainment rate of the shear layer bounding the separation zone behind the step, thereby reducing the mean reattachment length, . Direct Numerical Simulations (DNS) and Large-Eddy Simulations (LES) at Reh = 3000 (based on the step height, h, and the free stream velocity, U_∞) were carried out for the uncontrolled and the controlled flow case. The LES results were in good agreement with the DNS reference solutions. Adaptively controlled feedback simulations showed that a certain minimum distance between the step edge and the upstream position of the control fence is required to achieve a maximum reduction of the reattachment length.
机译:数值研究了非稳态分离流工况的被动控制方法(无外部能量输入)。将表面安装的控制围栏放置在向后步骤的上游,并且作为来流,使用厚度为δ/ h = 0.8的薄且完全展开的湍流边界层。被动控制的目的是提高在台阶后限制分离区的剪切层的夹带率,从而减小平均重新附着长度。对于非受控和受控流动情况,在Reh = 3000(基于步高h和自由流速度U_∞)下进行了直接数值模拟(DNS)和大涡模拟(LES)。 LES的结果与DNS参考解决方案非常吻合。自适应控制的反馈模拟结果表明,在阶跃边缘和控制围栏的上游位置之间需要一定的最小距离,以最大程度地减少重新连接的长度。

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