首页> 外文期刊>Progress in Oceanography >Circulation and mixing at the New England shelfbreak front: Results of purposeful tracer experiments
【24h】

Circulation and mixing at the New England shelfbreak front: Results of purposeful tracer experiments

机译:新英格兰货架突破前沿的循环和混合:有目的的示踪剂实验的结果

获取原文
获取原文并翻译 | 示例
       

摘要

We present the results of six dye tracer experiments that measured the mixing and circulation at the shelfbreak front on the New England Shelf. The last three were conducted during the New England Shelfbreak Productivity Experiment (NES-PEX) with concurrent isopycnal float deployments. The results are consistent with the Chapman and Lentz [Chapman, D.C., and Lentz, S.J. (1994). Trapping of a coastal density front by the bottom boundary layer. Journal of Physical Oceanography, 24, 1465-1479.] model prediction of the separation and upwelling along the shelfbreak front of bottom boundary layer (BBL) water forced by an Ekman buoyancy flux, but show considerable variability. Cross-shelf velocities at the detachment point are 2-3 x 10~(-2) m/s. But seaward, over the slope region, dye tagged water was sheared from the main patch into small filaments that upwelled along the front with cross-shelf speeds up to 0.1 m/s. Cross-shelf diffusion was of order 10 m~2/s in the mixed bottom layer and 1 m~2/s in the interior along the front. Within the stratified front, the mean vertical diffusivity was K_z ~ 4 x 10~(-6) m~2/s. The dispersion of shelfwater in the slope region is effected by turbulent flow with advective speeds exceeding the small scale diffusive mixing. The mean flux of the detached BBL water is sufficient to account for the net loss of shelf water during its transit from Cape Cod to Cape Hatteras.
机译:我们介绍了六个染料示踪剂实验的结果,这些实验测量了新英格兰货架上搁板架前部的混合和循环。后三项是在新英格兰棚架生产力试验(NES-PEX)中进行的,同时进行了等腰浮标的部署。结果与Chapman和Lentz [Chapman,DC。和Lentz,S.J.Am。 (1994)。底部边界层圈定沿海密度前沿。 Journal of Physical Oceanography,24,1465-1479。]模型预测了由Ekman浮力通量推动的底部边界层(BBL)水沿架子断裂前缘的分离和上升流,但显示出较大的可变性。分离点处的架速为2-3 x 10〜(-2)m / s。但是向海,在斜坡区域,染料标记的水从主斑块被剪切成细丝,这些细丝沿着前部上升,横架速度高达0.1 m / s。在混合底层,跨层架扩散约为10 m〜2 / s,内部沿前沿扩散约为1 m〜2 / s。在分层锋面内,平均垂直扩散率为K_z〜4 x 10〜(-6)m〜2 / s。湍流以超过小规模扩散混合的对流速度影响了斜坡区域中的架子水的分散。分离的BBL水的平均通量足以解决架子水从鳕鱼角到哈特拉斯角的净损失。

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