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Comparison research of ship-to-ship hydrodynamic interaction in restricted water between TEBEM and other computational method

机译:TEBEM与其他计算方法在受限水中船对船水动力相互作用的比较研究

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In this study, we systematically analyze the hydrodynamic interaction of two ships navigated parallel to each other in shallow water using the Taylor Expansion Boundary Element Method (TEBEM). As a low ship speed is assumed, the influence of the free-surface condition is neglected in the initial simulation. The influence of various parameters, including ship speed, water depth, and lateral distance between ships, on interaction force and moment are analyzed. Validation of the results using experimental data, boundary element method results, and numerical simulation results obtained using the Star CCM + commercial computational fluid dynamics software confirms that the TEBEM results are similar to those obtained using the high-order boundary element method and better than those obtained using the constant panel method. Further simulations assuming a free-surface effect are carried out using computational fluid dynamics calculations. Our results provide a high-precision and efficient analytical solution to the effects of viscosity, including the lifting force caused by asymmetric flow and free surfaces, in ship-to-ship interaction in restricted water and deeper insight into the influence on the results of the factors neglected by the potential flow simulation.
机译:在这项研究中,我们使用泰勒展开边界元方法(TEBEM)系统分析了两艘在浅水中平行航行的船舶的水动力相互作用。由于假定低船速,因此在初始模拟中忽略了自由表面条件的影响。分析了各种参数,包括船速,水深和船间横向距离,对相互作用力和力矩的影响。使用实验数据,边界元方法结果以及使用Star CCM +商业计算流体力学软件获得的数值模拟结果对结果进行验证,证实TEBEM结果与使用高阶边界元方法获得的结果相似,并且优于使用恒定面板方法获得。假定自由表面效应的进一步模拟是使用计算流体动力学计算进行的。我们的结果为在受限水域中的船对船相互作用中的粘度影响(包括由不对称流动和自由表面引起的提升力)提供了一种高精度,高效的分析解决方案,并更深入地了解了对结果的影响势流模拟忽略的因素。

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