海峡地区近底边界流长期动态变化特征研究

Lei Ren , Beinuo Zhou , Yingyu Huang , Shuxian Wang , Qin Zhu , Lilia Flores Mateos , Maximo Garcia‐Jove , Manman Wang , Peng Yao , Zhenchang Zhu
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引用次数: 0

摘要

海底边界层的动态过程对海洋能源勘探和环境保护等各种海洋应用至关重要。本文根据在佐治亚海峡底边界层附近站点连续测量的速度数据,探讨了近底边界流的水动力特征。以往对海底边界层的研究涉及物理、化学和生物等多个方面。然而,人们对流速分层结构的内在机理仍然知之甚少。因此,采用功率谱和小波分析方法分析了平均流速的显著周期和潮汐特征,并计算了近底边界层的厚度。结果表明,边界层的流速倾向于向东南和西北方向流动。8 月和 9 月有一个长达 15 天的重要时段。在水深 301 米处,垂直流速分层,显示出不同的流速层。根据垂直结构特征,边界层厚度从 5.23 米到 14.74 米不等。海底边界层的结构特征有利于加深我们对沉积物萌动、运移和沉积过程的认识。研究结果为今后的沉积物运动研究和海底边界层数值模拟分析提供了理论基础。对研究波流相互作用和海洋动力结构具有重要意义,可为海峡地区的开发利用提供科学支撑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Investigations into dynamic variation characteristics of near-bottom boundary flows over a long term at strait areas

Investigations into dynamic variation characteristics of near-bottom boundary flows over a long term at strait areas

Dynamic processes at the bottom boundary layers are crucial for various marine applications such as marine energy exploration and environmental protection. This paper explored hydrodynamic characteristics of near-bottom boundary currents based on the continuous measured velocity data at a site near the bottom boundary layer in the Strait of Georgia. Previous studies on the bottom boundary layer encompasses various aspects, including physical, chemical, and biological dimensions. However, the mechanism underlying the hierarchical structure of flow velocity remain poorly understood. Thus, the power spectrum and wavelet analysis were used to analyze the significant period of the averaged velocity and tidal characteristics, and to calculate the thickness of near-bottom boundary layer. The results indicate that the current velocities at the boundary layer tend to flow in south-eastern and north-western directions. There is a significant period of 15 days in August and September. At a depth of 301 m, the vertical velocities are stratified, indicating different velocity layers. The boundary layer thickness varies from 5.23 to 14.74 m, as indicated by the vertical structural characteristics. The structural characteristics of the seabed boundary layer are conducive to deepening our understanding of sediment's incipient motion, transport, and sedimentation process. The findings provide a theoretical foundation for future studies on sediment movement and the numerical simulation analysis of the bottom boundary layer. It is of great significance for the study of wave flow interaction and marine dynamic structure, and can provide scientific support for the development and utilization of the strait area.

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