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A Boundary Element Investigation of Liquid Sloshing in Coupled Horizontal and Vertical Excitation

机译:水平和垂直耦合激励下液体晃荡的边界元研究

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Sloshing flows in a two-dimensional rigid rectangular tank under specified excitations in the coupled horizontal and vertical modes are simulated by using a higher-order boundary element method (BEM). The liquid sloshing is formulated as an initial-boundary-value problem based on the fully nonlinear potential flow theory. And a semi-mixed Eulerian-Lagrangian technique combined with the 4th-order Runge-Kutta scheme is employed to advance the solutions in the time marching process. A smoothing technique is applied to the free surface at every several time steps to avoid the possible numerical instabilities. Numerical results obtained are compared with the available solutions to validate the developed model. The parametric studies are carried out to show the liquid sloshing effects in terms of the slosh frequencies and excitation amplitudes in horizontal and vertical modes, the second-order resonance frequency, a bottom-mounted vertical rigid baffle, free surface displacement, and hydrodynamic forces acting on the tank.
机译:通过使用高阶边界元法(BEM),在水平和垂直耦合模式下,在指定的激励下二维刚性矩形槽中的晃荡流动得到了模拟。基于完全非线性势流理论,将液体晃动公式化为初始边界值问题。然后将半混合的欧拉-拉格朗日技术与四阶Runge-Kutta方案相结合,以推进时间行进过程中的解。每隔几个时间步将平滑技术应用于自由表面,以避免可能的数值不稳定性。将获得的数值结果与可用的解决方案进行比较,以验证开发的模型。进行了参数研究,显示了液体晃动的影响,包括水平和垂直模式下的晃动频率和激发幅度,二阶共振频率,底部安装的垂直刚性挡板,自由表面位移以及流体动力作用在坦克上。

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