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A hybrid method for ship response coupled with sloshing in partially filled tanks

机译:在部分填充的油箱中船舶响应与晃荡耦合的混合方法

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An efficient hybrid numerical method was developed to study wave-induced ship response coupled with sloshing-induced compressible fluid response in partially filled tanks of a 138,000 m(3) liquefied natural gas carrier at zero speed in regular head and beam waves. A nonlinear boundary element Rankine source code, solving the incompressible incident flow field, accounted for the nonlinear stationary forward speed problem and the weakly nonlinear seakeeping problem. A Reynolds-averaged Navier-Stokes equations solver, computing the compressible sloshing flow in tanks, considered the associated discontinuous numerical domains of coupled simulations. Grid sensitivity studies were performed. Comparative available experimental model test measurements of ship response and free surface sloshing elevations in tanks validated the numerical method. Further investigations regarding the influence of wave steepness and tank fill levels on sloshing were performed. Results demonstrated that liquid sloshing in tanks had a large influence on ship surge and roll responses but hardly effected ship heave motions.
机译:开发了一种有效的混合数值方法来研究波浪引起的船舶响应以及晃荡引起的可压缩流体响应,这些载荷在138,000 m(3)液化天然气船的部分装满的储罐中以零速在规则的头部波和束波中进行研究。非线性边界元素兰金源代码,解决了不可压缩的入射流场,解决了非线性平稳前进速度问题和弱非线性航海问题。使用雷诺平均的Navier-Stokes方程求解器,计算罐中可压缩的晃荡流量,并考虑了耦合模拟的相关不连续数值域。进行网格敏感性研究。比较可用的实验模型测试测量值对船舶响应和舱内自由表面晃动标高进行了验证。关于波浪陡度和储罐液位对晃荡的影响进行了进一步研究。结果表明,液舱中的液体晃动对船舶的浪涌和侧倾响应有很大的影响,但对船舶的升沉运动几乎没有影响。

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