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Numerical simulation of 3D sloshing flow in partially filled LNG tank using a coupled level-set and volume-of-fluid method

机译:液位-液位耦合的液化天然气罐3D晃荡流动的数值模拟

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The motion induced 3D sloshing flow in partially filled LNG tank was investigated using a new coupled Level-Set and Volume-of-Fluid (CLSVOF) method incorporated into Finite-Analytic Navier-Stokes (FANS) method. In addition to accurately simulating the sloshing pattern inside LNG tank, impact pressures acting upon tank wall were also predicted by the CLSVOF method. Furthermore, the predicted impact pressures were compared with the corresponding experimental data and another numerical data by the pure level set method with global mass conservation scheme. The comparisons showed the CLSVOF method is capable of predicting the accurate sloshing induced impact and capturing the violent sloshing flow including wave breaking, jet formation, gas entrapping and liquid-gas interactions. The CLSVOF method also demonstrated the prominent feature in local and stable mass conservation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用新的结合在有限分析Navier-Stokes(FANS)方法中的液位设定和流体体积(CLSVOF)方法研究了部分填充LNG罐中运动引起的3D晃荡。除了精确模拟LNG储罐内部的晃荡模式外,还通过CLSVOF方法预测了作用在储罐壁上的冲击压力。此外,将预测的冲击压力与相应的实验数据和其他数值数据进行了比较,采用了具有整体质量守恒方案的纯水平集方法。比较结果表明,CLSVOF方法能够预测准确的晃荡诱发的冲击并捕获剧烈的晃荡流,包括波浪破碎,射流形成,气体截留和液-气相互作用。 CLSVOF方法还显示了局部和稳定质量守恒的突出特征。 (C)2015 Elsevier Ltd.保留所有权利。

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