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Numerical Study of Natural Supercavitation Influenced by Rheological Properties of Turbulent Drag-Reducing Additives

机译:湍流减阻添加剂流变特性影响自然超空化的数值研究

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摘要

Natural supercavitations in water and turbulent drag-reducing solution were numerically simulated using unsteady Reynolds averaged Navier-Stokes (RANS) scheme with mixture-multiphase model. The Cross viscosity equation was adopted to represent the fluid property of aqueous solution of drag-reducing additives. The characteristics of natural supercavity configuration and overall resistance of the navigating body were presented, respectively. The numerical simulation results indicated that, at the same cavitation number, the length and diameter of supercavity in drag-reducing solution are larger than those in water, and the drag coefficient of navigating body in solution is smaller than that in water; the surface tension plays an important role in incepting and maintaining the cavity. Turbulent drag-reducing additives have the potential in enhancement of supercavitation, drag reduction, and decrease of turbulent vortex structures. Numerical simulation results are consistent with the available experimental data.
机译:使用具有混合多相模型的非定常雷诺平均Navier-Stokes(RANS)方案,对水和湍流减阻溶液中的自然超空化进行了数值模拟。采用十字粘度方程式表示减阻添加剂水溶液的流体性质。分别给出了自然超空洞构造的特征和航行体的整体阻力。数值模拟结果表明,在相同的空化次数下,减阻溶液中的超空洞的长度和直径大于水中的值,且航行体的阻力系数小于水中的值。表面张力在接收和保持空腔方面起着重要作用。湍流减阻添加剂具有增强超空化,减阻和减少涡流结构的潜力。数值模拟结果与现有实验数据一致。

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