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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Cylindrical Smoothed Particle Hydrodynamics Simulations of Water Entry
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Cylindrical Smoothed Particle Hydrodynamics Simulations of Water Entry

机译:水入口圆柱平滑粒子流体动力学模拟

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This paper presents a smoothed particle hydrodynamics (SPH) modeling technique based on the cylindrical coordinates for axisymmetrical hydrodynamic applications, thus to avoid a full three-dimensional (3D) numerical scheme as required in the Cartesian coordinates. In this model, the governing equations are solved in an axisymmetric form and the SPH approximations are modified into a two-dimensional cylindrical space. The proposed SPH model is first validated by a dam-break flow induced by the collapse of a cylindrical column of water with different water height to semi-base ratios. Then, the model is used to two benchmark water entry problems, i.e., cylindrical disk and circular sphere entry. In both cases, the model results are favorably compared with the experimental data. The convergence of model is demonstrated by comparing with the different particle resolutions. Besides, the accuracy and efficiency of the present cylindrical SPH are also compared with a fully 3D SPH computation. Extensive discussions are made on the water surface, velocity, and pressure fields to demonstrate the robust modeling results of the cylindrical SPH.
机译:本文介绍了基于轴对称流体动力学应用的圆柱形坐标的平滑粒子流体动力学(SPH)建模技术,从而避免了笛卡尔坐标所需的全三维(3D)数值方案。在该模型中,控制方程以轴对称形式求解,并将SPH近似被修改为二维圆柱形空间。所提出的SPH模型首先通过柱面柱的圆柱形柱的漏洞流动验证,该柱柱与不同的水高度与半碱基比。然后,该模型用于两个基准水处理问题,即圆柱形盘和圆形球体进入。在这两种情况下,与实验数据相比,模型结果是有利的。通过与不同的颗粒分辨率进行比较来证明模型的收敛性。此外,本圆柱形SPH的精度和效率也与完全3D SPH计算进行比较。在水面,速度和压力场上进行了广泛的讨论,以展示圆柱形SPH的鲁棒建模结果。

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