Wave actions on side-by-side barges with sloshing effects: fixed–free arrangement

IF 2.8 Q2 MECHANICS Flow (Cambridge, England) Pub Date : 2022-07-29 DOI:10.1017/flo.2022.14
H. Liang, Xiangbo Liu, Kie Hian Chua, Pedro C. de Mello, Y. Choo
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引用次数: 3

Abstract

Abstract In offshore offloading operations, two vessels in a side-by-side configuration experience actions of both ambient water waves and liquid sloshing in internal tanks. Under the excitation of water waves, complex multibody motions are induced, resulting in liquid sloshing in tanks, and concurrently liquid sloshing can feedback to affect the vessels’ motions. The interaction between waves and two barges in a side-by-side configuration coupled with liquid sloshing effects is investigated for a fixed–free arrangement. A numerical model is developed based on the boundary element method to deal with complex wave induced multibody motions coupled with liquid sloshing in internal tanks. Due to the presence of a narrow gap between two vessels, gap resonance may occur, and a damping surface is introduced to suppress an unrealistic response near resonance. Concurrently, physical experiments with and without liquid sloshing effects are carried out. In-depth discussions on motion characteristics are given, and Stokes and non-Stokes natural frequencies associated with liquid sloshing are discussed. The significance of the present study is twofold. Firstly, the experimental measurements provide reference results for validations of numerical simulations. Secondly, this work gives an insight into wave induced motions with liquid sloshing effects under different wave headings which affect vessel operational safety.
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具有晃动效果的并排驳船上的波浪作用:固定自由安排
摘要在海上卸载作业中,并排配置的两艘船舶同时经历环境水波和内部储罐中液体晃动的作用。在水波的激励下,产生了复杂的多体运动,导致储罐中的液体晃动,同时液体晃动可以反馈影响容器的运动。对于固定-自由布置,研究了波浪与并排配置的两艘驳船之间的相互作用以及液体晃动效应。基于边界元法建立了一个数值模型,用于处理内部储罐中与液体晃动耦合的复杂波浪诱导多体运动。由于两个容器之间存在狭窄的间隙,可能会发生间隙共振,并引入阻尼表面来抑制共振附近的不切实际的响应。同时,进行了有和无液体晃动效应的物理实验。对运动特性进行了深入的讨论,并讨论了与液体晃动相关的斯托克斯和非斯托克斯固有频率。本研究的意义是双重的。首先,实验测量为数值模拟的验证提供了参考结果。其次,这项工作深入了解了在不同波向下具有液体晃荡效应的波浪诱导运动对船舶运行安全的影响。
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CiteScore
2.40
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