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Numerical simulation of bubbly flow around two tandem square-section cylinders by vortex method

机译:用涡旋法数值模拟两个串联方形圆柱周围的气泡流动

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The air-water bubbly flow around two tandem square-section cylinders is simulated with the vortex method proposed by the authors in a prior study. The flow was experimentally investigated by Shakouchi et al. The side length of cylinder s is 30 mm, and the distance between the cylinders is 2s. The water Reynolds number is 10 000, and the air volumetric flow ratio to whole fluid is 0.03. A pair of Karman vortices appear behind the first cylinder. The strength of the Karman vortex downstream of the second cylinder is larger than that for the single-cylinder. The strength of the Karman vortex reduces due to the bubble entrainment. The pressure reduction on the rear surface of the first cylinder is relaxed when compared with that on the single-cylinder. Therefore, the present simulation can predict the reduction of the drag force acting on the first cylinder, which was clarified by the corresponding experimental study. [PUBLICATION ABSTRACT]
机译:作者在先前的研究中提出的涡旋法模拟了两个串联的方形截面圆柱体周围的空气水气泡流动。流动由Shakouchi等人进行了实验研究。圆柱体s的边长为30 mm,圆柱体之间的距离为2s。水雷诺数为10000,空气对总流体的体积比为0.03。在第一个圆柱体的后面出现了一对卡曼涡旋。第二个圆柱体下游的卡曼涡流的强度大于单个圆柱体的强度。卡曼涡旋的强度由于气泡的夹带而降低。与单缸相比,第一缸的后表面的压力降低更为轻松。因此,本仿真可以预测作用在第一个气缸上的阻力的减小,这已通过相应的实验研究得到了证实。 [出版物摘要]

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