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Evaluation of Some Wedge-shaped Vortex Generators Using Swirl Center Tracking

机译:利用涡流中心跟踪评估某些楔形涡流发生器

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The primary vortex pair generated due to a vortex generator, used in the control of boundary-layer separation, is considered to energize the near-wall flow downstream of the device. Depending on the orientation of the device with respect to the flow, a pair of primarily streamwise co-rotating or counter-rotating vortex pair is formed. In this paper, the evolution of the primary vortex pair is tracked for different types of wedge shaped vortex generators. The present study makes an attempt to compare the vortex evolution using a swirl center tracking technique. Near surface contours of axial velocity, and contours of heliciity, are compared to evaluate the effects of vortex strength, and rates of lift-off of the primary vortex pair formed due to the different devices. The computations performed in this work involve supersonic flows past single vortex generators at Mach 2.5 and uses an immersed-boundary method to render the control devices. The flow solver used, REACTMB, is suitable for high-speed turbulent flows, and has been extensively validated in earlier works. The turbulence model used is Menter's k-ω/k-ε SST version.
机译:在边界层分离的控制中使用的由涡流发生器产生的初级涡流对被认为可以激励设备下游的近壁流。取决于装置相对于流动的取向,形成一对主要沿流向同向旋转或反向旋转的涡流对。在本文中,针对不同类型的楔形涡旋发生器跟踪了一次涡旋对的演化。本研究尝试使用旋流中心跟踪技术比较旋涡的演变。比较轴向速度的近表面轮廓和螺旋形轮廓,以评估涡流强度的影响以及由于不同装置而形成的初级涡流对的升起速率。在这项工作中执行的计算涉及以2.5马赫的速度通过单涡流发生器的超音速流动,并使用沉浸边界方法来绘制控制设备。使用的流量求解器REACTMB适用于高速湍流,并且在较早的工作中已得到广泛验证。使用的湍流模型是Menter的k-ω/k-εSST版本。

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