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MULTIPHASE FLOW SIMULATION OF WATER-ENTRY AND -EXIT OF AXISYMMETRIC BODIES

机译:轴对称体水处理和外探的多相流动模拟

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A fully-compressible, multiphase, homogeneous mixture model, based on unsteady Reynolds-averaged Navier-Stokes equations is presented in this study. Dual-time preconditioning method was employed to improve the computational efficiency of the solution. The multiphase flow solver has been applied to computations of: (1) cavitating flows over underwater projectiles; (2) transonic flow past an underwater projectile; (3) water impact of a circular cylinder entering the water; (4) water-entry of a hemisphere with one degree of freedom; and (5) supercavitating flows over an axisymmetric projectile during water-entry and water-exit. The surface pressure coefficients, water impact forces, vertical accelerations, and impact velocities are compared with available experiments and other published results. Good agreements with those results are obtained. Aspects of water-entry and water-exit flow physics of a projectile with and without gaseous exhaust plume including cavity shape, phase topography and drag coefficients are presented.
机译:本研究介绍了基于不稳定的雷诺平均天文的基于不稳定雷诺平均的Navier-Stokes方程的完全可压缩的多相均匀混合模型。采用双时预处理方法来提高解决方案的计算效率。多相流动求解器已应用于以下计算:(1)在水下射弹上的空化流动; (2)跨部队流过水下射弹; (3)圆柱体进入水的水冲击; (4)半球的水处理,具有一定程度的自由; (5)在水处理和水出口期间,超对称弹丸流过轴对称射弹。将表面压力系数,水冲击力,垂直加速度和冲击速度与可用实验和其他公开的结果进行比较。获得了与这些结果的良好协议。呈现出射弹和没有气体排出羽流的水入口和水出口流物理的方面,包括腔形状,相位形貌和拖曳系数。

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