首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Eddy-induced transport of the Kuroshio warm water around the Ryukyu Islands in the East China Sea
【24h】

Eddy-induced transport of the Kuroshio warm water around the Ryukyu Islands in the East China Sea

机译:涡流诱导东海琉球岛周围的Kuroshio温水运输

获取原文
获取原文并翻译 | 示例
           

摘要

In this study, an oceanic downscaling model in a double-nested configuration was used to investigate the role played by the Kuroshio warm current in preserving and maintaining biological diversity in the coral coasts around the Ryukyu Islands (Japan). A comparison of the modeled data demonstrated that the innermost submesoscale eddy-resolving model successfully reproduced the synoptic and mesoscale oceanic structures even without data assimilation. The Kuroshio flows on the shelf break of the East China Sea approximately 150-200 km from the islands; therefore, eddy-induced transient processes are essential to the lateral transport of material within the strip between the Kuroshio and the islands. The model indicated an evident predominance of submesoscale anticyclonic eddies over cyclonic eddies near the surface of this strip. An energy conversion analysis relevant to the eddy-generation mechanisms revealed that a combination of both the shear instability due to the Kuroshio and the topography and baroclinic instability around the Kuroshio front jointly provoke these near-surface anticyclonic eddies, as well as the subsurface cyclonic eddies that are shed around the shelf break. Both surface and subsurface eddies fit within the submesoscale, and they are energized more as the grid resolution of the model is increased. An eddy heat flux (EHF) analysis was performed with decomposition into the divergent (dEHF) and rotational (rEHF) components. The rEHF vectors appeared along the temperature variance contours by following the Kuroshio, whereas the dEHF properly measured the transverse transport normal to the Kuroshio's path. The diagnostic EHF analysis demonstrated that an asymmetric dEHF occurs within the surface mixed layer, which promotes eastward transport toward the islands. Conversely, below the mixed layer, a negative dEHF tongue is formed that promotes the subsurface westward warm water transport.
机译:在这项研究中,使用双嵌套配置的海洋缩小模型来研究Kuroshio温暖当前在Ryukyu群岛(日本)周围的珊瑚海岸保存和维持生物多样性方面所发挥的作用。建模数据的比较表明,即使没有数据同化,最内部的子尺度涡模型也成功再现了Synoptic和Mesoscale海洋结构。 Kuroshio在东海的货架突破距离岛屿约150-200公里;因此,涡流诱导的瞬态过程对于Kuroshio和岛屿之间的条带内的材料的横向运输是必不可少的。该模型表明,在该条带表面附近的循环漩涡上,亚源尺度反气旋EDDIES的显着优势。与涡流发电机制相关的能量转换分析显示,由于KUROSHIO和KUROSHIO前部周围的形貌和地形和曲金的不稳定性,剪切不稳定性的组合共同挑起了这些近表面反气旋漩涡,以及地下旋风漩涡围绕着货架休息。表面和地下漩涡均匀均匀,并且随着模型的电网分辨率增加,它们的通电更加良好。用分解成分解(DEHF)和旋转(REHF)组分进行涡热通量(EHF)分析。 REHF矢量通过沿着Kuroshio沿着温度方差轮廓出现,而DEHF适当地测量横向传输到KUROSHIO的路径。诊断EHF分析证明了表面混合层内发生的不对称DEHF,其促进向岛屿的东方运输。相反,在混合层下方,形成负Dehf舌头,促进地下向西温水运输。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号