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Experimental characterization of flow field around a square prism with a small triangular prism

机译:带有小三角棱镜的方形棱镜周围流场的实验表征

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摘要

The characteristics of the flow field around a square prism containing a small triangular prism upstream were investigated by measuring lift and drag and visualizing the flow field through particle image velocimetry. Experimental parameters included triangular prism-to-square prism width ratio (H/B, H and B are side lengths of the triangular and square prisms, respectively) and triangular prism-to-square prism gap ratio (G/B, G is the gap distance between the triangular and square prisms). The drag reduction rate of the square prism increased and then decreased with increasing G/B at a constant H/B but increased with increasing H/B at a constant G/B. The maximum drag reduction rate was 78.5% at H/B = 0.6 and G/B = 1.5. The width and gap ratios also minimally affected the lift reduction rate of the square prism, with an average value of 52.4%. Stagnation regions were further observed upstream and downstream of the square prism.
机译:通过测量升力和阻力并通过粒子图像测速法可视化流场,研究了上游包含小三角棱镜的方形棱镜周围的流场特性。实验参数包括三角棱镜与正方形棱镜的宽度比(H / B,H和B分别为三角棱镜和正方形棱镜的边长)和三角棱镜与正方形棱镜的间隙比(G / B,G为三角形和方形棱镜之间的间隙距离)。在恒定的H / B下,方形棱镜的减阻率随G / B的增加而增加,然后减小,但在恒定的G / B的情况下,随H / B的增加而增加。在H / B = 0.6和G / B = 1.5时,最大减阻率为78.5%。宽度和间隙比对方形棱镜的升力减小率的影响也最小,平均值为52.4%。在直角棱镜的上游和下游还观察到停滞区域。

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