首页> 外文会议>36th International conference on ocean, offshore and arctic engineering 2016 >VALIDATION OF OPEN-SOURCE SPH CODE DUALSPHYSICS FOR NUMERICAL SIMULATIONS OF WATER ENTRY AND EXIT OF A RIGID BODY
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VALIDATION OF OPEN-SOURCE SPH CODE DUALSPHYSICS FOR NUMERICAL SIMULATIONS OF WATER ENTRY AND EXIT OF A RIGID BODY

机译:刚体进水和出水数值模拟的开放源SPH代码双物理验证

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Water entry and exit of a body is an important topic in naval hydrodynamics as these phenomena play relevant roles both for offshore structures and vessels. Water entry and exit events are intrinsically transient and represent intense topological changes in the system, with large amounts of momentum exchange between phases. At its onset, they can be characterized by highly localized, both in space and time, loads on the vessel, influencing both the local structural safety of the structure and the global loads acting on it. The DualSPHysics code is proposed as a numerical tool for the simulation of fluid and floating object interaction. The numerical model is based on a Smoothed Particle Hydrodynamics discretization of the Navier-Stokes equations and Newton's equations for rigid body dynamics. This paper examines the water impact, fluid motions, and movement of objects in the conventional case studies of object entry and exit from still water. A two dimensional body drop analysis was carried out demonstrating acceptable agreement of the movement of the object with published experimental and numerical results. The velocity field of the fluid is also captured and analyzed. Simulations for water entry and exit of a buoyant and neutral density cylinder compares well with previous experimental, numerical, and empirical studies in penetration, free surface evolution and object kinematics. These results provide a good foundation to evaluate the accuracy and stability of the DualSPHysics implementation for modeling the interaction between free surface flow and free moving floating objects.
机译:身体的进水和出水是海军流体力学的重要课题,因为这些现象对于海上结构和船舶都起着重要的作用。进水和出水事件本质上是瞬态的,代表系统中的剧烈拓扑变化,各相之间有大量动量交换。刚开始时,它们的特点是在空间和时间上都高度局部化,作用在船上,既影响结构的局部结构安全性,又影响作用在结构上的整体载荷。拟将DualSPHysics代码作为一种数值工具来模拟流体和漂浮物体之间的相互作用。数值模型基于Navier-Stokes方程和Newton刚体动力学方程的平滑粒子流体动力学离散化。本文在对象进入和离开静水的常规案例研究中研究了水的冲击,流体运动和对象的运动。进行了二维物体跌落分析,表明物体的运动与已公开的实验和数值结果相符。流体的速度场也被捕获和分析。浮力和中性密度圆柱体进水和出水的模拟与之前在渗透,自由表面演变和物体运动学方面的实验,数值和经验研究相比较很好。这些结果为评估DualSPHysics实现的准确性和稳定性奠定了良好的基础,该实现用于对自由表面流和自由移动的漂浮物之间的相互作用进行建模。

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