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Numerical study on evolution of axisymmetric natural supercavitation influenced by turbulent drag-reducing additives

机译:湍流减阻添加剂影响轴对称自然超空化演化的数值研究

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This paper attempts to investigate the effect of turbulent drag-reducing additives during the evolution process of natural supercavities. The finite volume method was adopted to numerically simulate the development process of natural cavitating flow. Specifically, in order to characterize the rheological property of the drag-reducing solution, the Cross viscosity equation together with a decreased surface tension coefficient were employed. Firstly, steady numerical simulation is performed on the characteristics of supercavitation in water and drag-reducing solutions to verify the accuracy of the numerical procedure. Subsequently, supercavity-configuration and drag resistance varying with time were intensively analyzed. The results indicate that, at the same instant, the cavity has a larger size in length and diameter when handling drag-reducing solutions than the water case. Meanwhile, the drag felt by the underwater projectile maintains smaller in drag-reducing solution cases. Another interesting phenomenon is that both in water and drag-reducing solution, the sizes of the cavities increase first and then decrease to a constant value; in addition, the resistances decrease first with time, and then increase to a stable state. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文试图研究湍流减阻添加剂在自然超空洞演化过程中的作用。采用有限体积法数值模拟了空化流的发展过程。具体地,为了表征减阻溶液的流变性质,使用了交叉粘度方程式和降低的表面张力系数。首先,对水的超空化特性和减阻解进行了稳定的数值模拟,以验证数值程序的准确性。随后,深入分析了超空泡构型和随时间变化的抗阻力性。结果表明,同时处理减阻溶液时,腔的长度和直径要比水腔大。同时,在减阻解决方案中,水下弹丸所感受到的阻力保持较小。另一个有趣的现象是,在水和减阻溶液中,型腔的尺寸先增大然后减小到恒定值。另外,电阻首先随时间减小,然后增加到稳定状态。 (C)2016 Elsevier Ltd.保留所有权利。

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