...
首页> 外文期刊>Journal of Physical Oceanography >Warm Spiral Streamers over Gulf Stream Warm-Core Rings
【24h】

Warm Spiral Streamers over Gulf Stream Warm-Core Rings

机译:温暖的螺旋飘带在海湾溪流温芯环

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

This study examines the generation of warm spiral structures (referred to as spiral streamers here) over Gulf Stream warm-core rings. Satellite sea surface temperature imagery shows spiral streamers forming after warmer water from the Gulf Stream or newly formed warm-core rings impinges onto old warm-core rings and then intrudes into the old rings. Field measurements in April 2018 capture the vertical structure of a warm spiral streamer as a shallow lens of low-density water winding over an old ring. Observations also show subduction on both sides of the spiral streamer, which carries surface waters downward. Idealized numerical model simulations initialized with observed water-mass densities reproduce spiral streamers over warm-core rings and reveal that their formation is a nonlinear submesoscale process forced by mesoscale dynamics. The negative density anomaly of the intruding water causes a density front at the interface between the intruding water and surface ring water, which, through thermal wind balance, drives a local anticyclonic flow. The pressure gradient and momentum advection of the local interfacial flow push the intruding water toward the ring center. The large-scale anticyclonic flow of the ring and the radial motion of the intruding water together form the spiral streamer. The observed subduction on both sides of the spiral streamer is part of the secondary cross-streamer circulation resulting from fronto-genesis on the stretching streamer edges. The surface divergence of the secondary circulation pushes the side edges of the streamer away from each other, widens the warm spiral on the surface, and thus enhances its surface signal.
机译:本研究审查了在墨西哥湾流芯环上的温暖螺旋结构(在此称为螺旋飘带)的产生。卫星海面温度图像显示螺旋飘带在从海湾流的温暖水中形成的螺旋飘带或新形成的温芯环撞击旧的温核环,然后侵入旧环。 2018年4月的现场测量捕获温暖螺旋流圈的垂直结构,作为旧环的低密度水绕组的浅透镜。观察结果还显示螺旋流动的两侧的俯冲,从而向下带表面水。通过观察到的水质量密度初始化的理想数值模型模拟在温暖的核心环上再现螺旋飘带,并揭示了它们的形成是由Mescle Dynamics强制的非线性亚透视过程。侵入水的负密度异常导致侵入水和表面环水之间的界面处的密度前沿,这通过热风平衡,驱动局部的反型反型函数。局部界面流动的压力梯度和动量平流将侵入水推向环中心。环的大规模反转流和侵入水的径向运动一起形成螺旋飘带。螺旋流镜子两侧的观察到的俯仰是由伸展飘带边缘上的前端 - 基因产生的次级交叉飘带循环的一部分。二次循环的表面偏转将拖缆的侧边彼此推开,宽度宽的温暖螺旋,从而增强其表面信号。

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