深海内部孤波与海底之间的相互作用

Zhuangcai Tian, Jinjian Huang, Jiaming Xiang, Shaotong Zhang, Jinran Wu, Xiaolei Liu, Tingting Luo, Jianhua Yue
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引用次数: 0

摘要

内孤波(ISW)作为一种典型的深海海洋动力过程,广泛存在于世界各地的大洋和边缘海中。内孤波与海底的相互作用主要发生在海底边界层。对于深海海底边界层而言,ISW 是最重要的动力过程。本研究通过 CiteSpace 分析了 ISW 与海底相互作用的研究现状、热点和前沿。围绕 ISW 对海底的作用,如转化和反应,系统分析和总结了大量的研究工作和成果。在此基础上,本研究分析了波浪相互作用以及 ISW 与海底床形或斜坡之间的相互作用,为深入理解 ISW 与海底之间的相互作用提供了新的视角。最后,介绍了 ISW 对海底边界层和海洋工程稳定性的最新研究成果,并总结了当前研究工作中尚未解决的问题。本研究为进一步研究 ISW 对海洋工程地质的危害提供了有价值的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Interaction between internal solitary waves and the seafloor in the deep sea

Internal solitary wave (ISW), as a typical marine dynamic process in the deep sea, widely exists in oceans and marginal seas worldwide. The interaction between ISW and the seafloor mainly occurs in the bottom boundary layer. For the seabed boundary layer of the deep sea, ISW is the most important dynamic process. This study analyzed the current status, hotspots, and frontiers of research on the interaction between ISW and the seafloor by CiteSpace. Focusing on the action of ISW on the seabed, such as transformation and reaction, a large amount of research work and results were systematically analyzed and summarized. On this basis, this study analyzed the wave–wave interaction and interaction between ISW and the bedform or slope of the seabed, which provided a new perspective for an in-depth understanding of the interaction between ISW and the seafloor. Finally, the latest research results of the bottom boundary layer and marine engineering stability by ISW were introduced, and the unresolved problems in the current research work were summarized. This study provides a valuable reference for further research on the hazards of ISW to marine engineering geology.

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Issue Information Two-year growth of Deep Underground Science and Engineering: A perspective Acknowledgment of reviewers A review of mechanical deformation and seepage mechanism of rock with filled joints Issue Information
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