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Numerical sloshing simulations: Comparison between lagrangian and lumped mass models applied to two compartments with mass transfer

机译:数值晃动模拟:将拉格朗日模型与集总质量模型应用于传质两个隔室的比较

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In the present paper, 2D numerical simulation of sloshing waves coupled to the flooding flow between two compartments is carried out employing lumped mass and Lagrangian methods. The first method used is a Lumped Mass method with a moving free surface (LM), which is based on the motion equations for the gravity centre of mass within a compartment. In this method, the free surface is modelled as a planar surface, with limited degrees of freedom. The second one is the so-called Moving Particle Semi Implicit (MPS) method, a robust method based on particle interactions in a Lagrangian coordinate system. Sloshing simulations are performed within a closed domain, in which the free surface is modelled as a deformable surface for a single-phase flow. An improved boundary wall condition scheme is applied. By applying these two methods the hydrodynamic features of the sloshing flow under sway and roll motion and several water levels are investigated. The excitation frequencies are set near the natural wave frequencies. Furthermore, the complexity added to the sloshing wave by the flow exchange passing through an opening are reported, taking into account two opening configurations. The numerical results are validated by corresponding experimental data. Comparison of the numerical results against the experimental data shows, in general, good agreement. Two main stages of accuracy, levels are observed for lower and higher frequencies. At the first stage, the Lumped Mass and the Moving Particle Semi Implicit methods present similar results, whereas at the last stage the MPS model is seen to be more suitable for the sloshing simulations, in which wave breaking is the dominant phenomenon. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,采用集总质量和拉格朗日方法对与两个舱室之间的洪水流动耦合的晃荡波进行了二维数值模拟。使用的第一种方法是具有自由运动表面(LM)的集总质量方法,该方法基于车厢内重心的运动方程式。在这种方法中,自由表面被建模为具有有限自由度的平面。第二种方法是所谓的“移动粒子半隐式”(MPS)方法,这是一种基于拉格朗日坐标系中粒子相互作用的鲁棒方法。在封闭区域内执行晃荡模拟,其中将自由表面建模为单相流的可变形表面。应用了改进的边界墙条件方案。通过应用这两种方法,研究了摇摆和横摇运动下晃荡流的水动力特性以及几种水位。激发频率设置为接近自然波频率。此外,报告了考虑到两个开口的构造,流过一个开口的流量交换增加了晃动波的复杂性。数值结果通过相应的实验数据验证。数值结果与实验数据的比较表明,总体而言,一致性很好。准确性的两个主要阶段,即较低和较高频率的水平。在第一阶段,集总质量和运动粒子半隐式方法显示出相似的结果,而在最后阶段,MPS模型被认为更适合于晃荡模拟,其中波浪破碎是主要现象。 (C)2016 Elsevier Ltd.保留所有权利。

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