首页> 外文会议>ERCOFTAC International Symposium on Engineering Turbulence Modelling and Measurements(ETMM6); 20050523-25; Sardinia(IT) >ACTIVE CONTROL OF TURBULENT SEPARATED FLOWS BY MEANS OF LARGE SCALE VORTEX EXCITATION
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ACTIVE CONTROL OF TURBULENT SEPARATED FLOWS BY MEANS OF LARGE SCALE VORTEX EXCITATION

机译:大型涡旋激励对湍流分离流的主动控制

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摘要

The experimental investigations in the present paper deal with the excitation of fundamental instability mechanisms in separated free shear layers on a bluff body and downstream of a diffuser by means of periodic forcing in order to reduce the expansion of flow separation. The experiments focus on an unique approach to separation control using fundamental frequencies for local forcing in two different shear layer configurations (inner and outer diffusers). Each separation process is characterized by the periodic occurrence of large spanwise vortex structures. These vortices scale with the difference in height between the ramp ends. The excitation of these large scale vortex structures by periodic forcing intensifies the momentum transfer between the separation region and the outer flow, resulting in a substantial reduction of the reattachment length. For the inner and outer diffuser configurations, a universal value for the optimum forcing frequency was established.
机译:本文的实验研究是通过周期性的强迫作用来激发钝体上和扩散器下游的分离的自由剪切层中基本失稳机理的激发,以减小流动分离的扩展。实验着重于一种独特的分离控制方法,该方法使用基本频率在两个不同的剪切层配置(内部和外部扩散器)中进行局部施力。每个分离过程的特征都是周期性出现大的展向涡结构。这些涡流随坡道末端之间的高度差而缩放。通过周期性强迫激励这些大型旋涡结构,可以增强分离区域和外部流动之间的动量传递,从而大大减少了重新连接的长度。对于内部和外部扩散器配置,确定了最佳强制频率的通用值。

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