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Time-domain TEBEM method for wave added resistance of ships with forward speed

机译:时域TEBEM船舶船舶船舶换热的方法

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摘要

A numerical method for solving 3D unsteady potential flow problem of ship advancing in waves was put forward. The flow field was divided into an inner and an outer domain by introducing an artificial matching surface. The inner domain was surrounded by a ship-wetted surface and a matching surface as well as part of the free surface. The free-surface condition for the inner domain was formulated by perturbation about the double-body (DB) flow assumption. The outer domain was surrounded by a matching surface and the rest had a free surface as well as an infinite far-field radiation boundary. The free-surface condition for the outer domain was formulated by perturbation of the uniform incoming flow. The simple Green function and transient free-surface Green function were used to form the boundary integral equation (BIE) for the inner and outer domains, respectively. The Taylor expansion boundary element method (TEBEM) was adopted to solve the DB flow and inner-domain and outer-domain unsteady flow BIE. Matching conditions for the inner-domain flow and outer-domain flow were enforced by the continuity of velocity potential and normal velocity on the matching surface. Direct pressure integration on the ship-wetted surface was applied to obtain the first- and second-order wave forces. The numerical prediction on the displacement, acceleration and added resistance of the 14000-TEU container ship at different forward speeds were investigated by the proposed TEBEM method. Reynolds-Averaged Navier-Stokes (RANS) equations based on Computational Fluid Dynamics (CFD) method were adopted to compare with TEBEM method. The physical tank experiment results also validated the accuracy of the numerical tank results. Compared with the experimental solutions, TEBEM obtained good agreement with the RANS CFD method. TEBEM, however, was much more efficient and robust.
机译:提出了一种解决波浪前进的3D不稳定潜在流动问题的数值方法。通过引入人工匹配表面将流场分成内部和外部结构域。内部结构域被毛湿度表面和匹配表面以及自由表面的一部分包围。内部结构域的自由表面条件通过扰动围绕双体(DB)流动假设配制。外部结构域被匹配表面包围,其余的具有自由表面以及无限的远场辐射边界。外部结构域的自由表面条件通过筛选均匀的进入流动配制。简单的绿色功能和瞬态自由表面绿色函数分别用于形成内部和外部域的边界积分方程(BIE)。采用泰勒膨胀边界元法(TEBEM)来解决DB流量和内部域和外域非定常流效果。通过匹配表面的速度电位和正常速度的连续性强制实施内域流和外域流动的匹配条件。施加船舶湿润表面上的直接压力集成以获得第一和二阶波力。通过提出的TEBEM方法研究了14000-TEU集装箱船以不同前进速度的位移,加速度和附加电阻的数值预测。采用基于计算流体动力学(CFD)方法的Reynolds平均Navier-Stokes(RAN)方程与TEBEM方法进行比较。物理罐实验结果还验证了数值罐结果的准确性。与实验溶液相比,TEBEM与RAN CFD方法获得了良好的一致性。然而,Tebem更有效和强大。

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