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A numerical study of violent sloshing problems with modified MPS method

机译:改性MPS方法剧烈晃动问题的数值研究

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A numerical study on violent liquid sloshing phenomenon in a partially filled rectangular container is carried out by using moving particle semi-implicit (MPS) method. The present study deals with the implementation of five modifications all together over the original MPS method. The modifications include improved source terms for pressure Poisson equation, special approximation technique for the representation of gradient differential operator, collective action of mixed free surface particle identification boundary conditions, effecting Neumann boundary condition on solving the PPE and fixing judiciously the parting distance among particles to prevent collision. The suitability of the kernel function used in the original MPS method along with these five modifications is investigated for violent sloshing problems. The present model ensures a good agreement between numerical results with the existing experimental observations. The model is successfully applied to a partially filled tank undergoing horizontal sinusoidal excitation to compute the sloshing wave amplitudes and pressure on tank walls. The assessment of dynamic behaviour manifested in terms of base shear, overturning moment and impact pressure load exerted on tank ceiling induced by violent sloshing motion using MPS method is not reported in the open literature and has been efficiently carried out in the present study.
机译:通过使用移动颗粒半隐式(MPS)方法进行部分填充矩形容器中剧烈液体晃动现象的数值研究。本研究涉及在原始MPS方法上实现五种修改。该修改包括改进的压力泊松方程的源术语,梯度微分算子的表示的特殊近似技术,混合自由表面粒子识别边界条件的集体作用,实现了Numann边界条件在求解PPE并明智地固定粒子之间的分离距离防止碰撞。在原始MPS方法中使用的核功能的适用性以及这五种修改进行了剧烈的晃动问题。本模型确保数值结果与现有实验观察结果之间的良好一致性。该模型成功地应用于铺设水平正弦激励的部分填充罐以计算晃动波浪幅度和罐壁上的压力。在开放文献中未报道,在开放文献中未报告对由剧烈晃动运动施加的罐天花板上施加的施坦剪切,推翻的瞬间和冲击压力载体的动态行为的评估未在本研究中有效地进行。

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