RANS Predictions of Junction Flow with Localized Suction

Shakeel Ahmed, A. Malik, K. Parvez
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Abstract

Horseshoe vortex is a prominent feature in junction flows which not only changes the local flow patterns but is also responsible for aerodynamic loses in the region. In the past many investigations using wind tunnels and CFD have been made to study the junction flow. These studies have shown that RANS prediction of the junction flow demonstrate an acceptable qualitative match with the experimental results. The present study extends the CFD investigations to RANS predictions of the junction flow with boundary layer control using localized suction. Localized suction is an active technique that has proved successful, in the past through wind tunnel measurements, in elimination of the junction horseshoe vortex. The present investigations used these experimental results to evaluate the RANS predictions from the current study. During the course of this study, six cases of junction flows with and without localized suction were numerically simulated and compared with the wind tunnel measurements. For no suction case CFD and experiment have been found in good agreement with similar patterns observed for the vortex core in the symmetry plane. When suction was applied, a similar reduction in the vortex core was predicted by CFD as observed in the wind tunnel. It was concluded that RANS have made fairly accurate predictions in almost all the cases in comparison with the experimental data.
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局部吸力下结流的RANS预测
马蹄形涡是结流中的一个显著特征,它不仅改变了结流的局部流型,而且造成了结流区域的气动损失。在过去的许多研究中,利用风洞和CFD来研究结流。这些研究表明,RANS对结流的预测与实验结果具有可接受的定性匹配。本研究将CFD研究扩展到使用局部吸力的边界层控制的结流的RANS预测。局部吸力是一种主动技术,在过去的风洞测量中被证明是成功的,可以消除交界处的马蹄涡。本研究使用这些实验结果来评估本研究的RANS预测。在研究过程中,对有局部吸力和无局部吸力的6种结流进行了数值模拟,并与风洞测量结果进行了比较。在没有吸力的情况下,计算流体力学和实验结果与对称平面上的涡核相似。当施加吸力时,CFD预测涡核的减小与在风洞中观察到的相似。结果表明,与实验数据相比,RANS在几乎所有情况下都做出了相当准确的预测。
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