Experimental study of primary- and higher-mode resonant sloshing in a horizontally excited square-base tank

IF 4.4 2区 工程技术 Q1 ENGINEERING, OCEAN Applied Ocean Research Pub Date : 2025-03-01 Epub Date: 2025-02-22 DOI:10.1016/j.apor.2025.104482
Dongxi Liu , Qiyang Cai , Yiran Li , Yudi He , Jin Wang
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Abstract

This study experimentally investigates primary- and higher-mode resonant sloshing induced by horizontal excitations in a square-base tank with finite depth. Due to the equal length and width of the three-dimensional rectangular tank, two predominant sloshing modes (the transverse mode and longitudinal mode) emerge simultaneously, even when the tank is subjected to unidirectional external excitation. Consequently, direct excitation of one mode leads to indirect excitation of the other through nonlinear coupling, a complex phenomenon known as autoparametric interaction. This phenomenon is widely observed in (i, j) sloshing modes, where ij. However, the coupling of autoparametric interaction is stable only in the lowest mode, higher modes are found to be unstable. The experiment also reveals that when the natural frequencies of two modes are very close, applying external excitation at one natural frequency causes a shift in the dominant frequency towards the natural frequency of the other mode. In summary, the findings of this study highlight that liquid sloshing in a square-base tank involves more complex physics compared to sloshing in a two-dimensional rectangular tank.
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水平激励方底槽一次模和高模谐振晃动实验研究
实验研究了有限深度方形槽内水平激励引起的初级模态和高模态谐振晃动。由于三维矩形水箱的长度和宽度相等,即使在单向外部激励下,也会同时出现两种主要的晃动模式(横向模态和纵向模态)。因此,通过非线性耦合,一种模式的直接激励导致另一种模式的间接激励,这是一种称为自参数相互作用的复杂现象。这种现象在i≠j的(i, j)晃动模态中广泛存在。然而,自参数相互作用的耦合仅在最低模态下是稳定的,而在更高模态下则是不稳定的。实验还表明,当两个模态的固有频率非常接近时,在一个固有频率上施加外部激励会导致主导频率向另一个模态的固有频率偏移。总之,本研究的结果强调,与二维矩形槽中的晃动相比,方形槽中的液体晃动涉及更复杂的物理。
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来源期刊
Applied Ocean Research
Applied Ocean Research 地学-工程:大洋
CiteScore
8.70
自引率
7.00%
发文量
316
审稿时长
59 days
期刊介绍: The aim of Applied Ocean Research is to encourage the submission of papers that advance the state of knowledge in a range of topics relevant to ocean engineering.
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