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Assessment of breaking waves and liquid sloshing impact

机译:分解波和液体晃动影响的评估

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This article presents an overview of breaking waves and liquid sloshing impact acting on rigid walls and in liquid containers. The physics of breaking waves against rigid walls can be understood through the Bagnold/Mitsuyasu piston theory. The flip-through is a major feature associated with the occurrence of violent waves without any actual impact on the wall. The physics of the phase transition during liquid impacts involves two- and multi-phase flows due to the entrapped gas pockets is addressed. The liquid sloshing assessment of liquefied natural gas tanks together with the dimensionless parameters governing the design of small-scale models is discussed. The nonlinear liquid sloshing dynamics under sway and rotational excitations is described for different container geometries. This article will discuss recent developments of numerical algorithms and computer codes capable to describe breaking waves and extreme sloshing impacts. Moreover, recent advances in breaking Faraday waves are also addressed together with an assessment of breaking interfacial gravity waves, in which a multilayer or stratified medium is a stack of different thin layers.
机译:本文概述了在刚性墙壁和液体容器上作用的破碎波和液体晃动冲击。通过Bagnold / MitsuyaSu活塞理论,可以理解破坏刚性壁的波浪的物理学。翻转是与剧烈发生剧烈的主要特征,而没有对墙壁的任何实际影响。液体冲击期间相变的物理涉及由于夹带的气体袋而导致的两个和多相流动。讨论了液化天然气罐的液体晃动评估与控制小规模模型设计的无量纲参数。对于不同的容器几何形状,描述了摇摆下的非线性液体晃动动力学和旋转激发。本文将讨论最近能够描述破坏波浪和极端晃动影响的数字算法和计算机代码的最新发展。此外,近期破坏法拉第波的进步也与断裂界面重力波的评估一起寻址,其中多层或分层介质是不同薄层的堆叠。

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