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Effect of topography on the cold water region in the east entrance area of Qiongzhou Strait

机译:琼州海峡东部地区地形对冰水区的影响

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摘要

A cold water region will occur in the east entrance area of Qiongzhou Strait when upwelling develops off the northeast coast of Hainan Island. The effect of topography on this cold water region was investigated by combining satellite observations and numerical simulations. Multi-source high-resolution remote-sensed sea surface temperature images revealed that the western periphery of the cold water region frequently occurred at a quasi-fixed location with similar jagged structure. Compared with observations, the numerical model employed in this study could satisfactorily simulate the intense tidal currents in the strait, and reasonably reproduce the jagged western periphery of the cold water region. Under strong westward tidal flow, the cold upwelling water intruded deeply into the interior strait, whereas under sustained eastward tidal currents, much stronger tidal currents occurred where there were deeper waters connecting the inner strait, therefore the cold upwelling water faded towards east faster and formed the concave parts (looking in east-to-west direction) of the western periphery of the cold water region; conversely, convex parts would develop over the adjacent shallower shoals. The eastward movement of the cold water was dominated by topography-modified tidal currents, and only after sustained eastward tidal currents (usually in the second half or near the end of the eastward tidal current phase), the western periphery of the cold water region would occur at a quasi-fixed location with similar jagged shape. Moreover, the development of the upwelling off the northeast coast of Hainan Island, which was the precondition of the cold water region, was found to be mainly driven by sustained SE similar to S winds.
机译:在海南岛东北沿海地区开发了琼州海峡的东进出区,将发生冷水区。通过组合卫星观测和数值模拟来研究地形对这种冷水区的影响。多源高分辨率遥感海表面温度图像显示,冷水区域的西方周边经常发生在具有相似锯齿状结构的准固定位置。与观察结果相比,本研究中采用的数值模型可以令人满意地模拟海峡中强烈的潮流,并合理地再现冷水区的锯齿状西方周边。在强烈的西风流动下,寒冷的上升水深入进入内部海峡,而在持续的东潮潮流下,发生了更强大的潮流,在连接内部海峡的深水较深,因此冷藏水朝向东方较快,形成了冷水区西周边的凹部(望向西方向);相反,凸部将在相邻的浅浅滩上发展。冷水的东部运动由地形改性的潮流主导,并且只有在持续的东潮电流(通常在后半部分或在东潮电流阶段结束时),寒冷水域的西方周边将会发生在具有相似锯齿状的准固定位置。此外,发现海南岛东北沿岸的升值发展,这是冷水区的前提,主要由类似于S风的持续培养。

著录项

  • 来源
    《Estuarine Coastal and Shelf Science》 |2020年第5期|106820.1-106845.12|共12页
  • 作者单位

    Guangdong Ocean Univ Coll Ocean & Meteorol Guangdong Prov Key Lab Coastal Ocean Variat & Dis Zhanjiang Peoples R China|Marine Resources Big Data Ctr South China Sea Southern Marine Sci & Engn Guangdong Lab Zhanjian Zhanjiang Peoples R China;

    Guangdong Ocean Univ Coll Ocean & Meteorol Guangdong Prov Key Lab Coastal Ocean Variat & Dis Zhanjiang Peoples R China|Marine Resources Big Data Ctr South China Sea Southern Marine Sci & Engn Guangdong Lab Zhanjian Zhanjiang Peoples R China;

    Guangdong Ocean Univ Coll Ocean & Meteorol Guangdong Prov Key Lab Coastal Ocean Variat & Dis Zhanjiang Peoples R China|Marine Resources Big Data Ctr South China Sea Southern Marine Sci & Engn Guangdong Lab Zhanjian Zhanjiang Peoples R China;

    Shantou Univ Inst Marine Sci Shantou Peoples R China;

    Guangdong Ocean Univ Coll Ocean & Meteorol Guangdong Prov Key Lab Coastal Ocean Variat & Dis Zhanjiang Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Qiongzhou strait; Hainan island; ROMS; Upwelling; Cold water region;

    机译:琼州海峡;海南岛;罗姆斯;升值;冷水区;

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