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Submesoscale streamers exchange water on the north wall of the Gulf Stream

机译:亚中尺度的拖缆在墨西哥湾流的北壁交换水

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摘要

The Gulf Stream is a major conduit of warm surface water from the tropics to the subpolar North Atlantic. Here we observe and simulate a submesoscale (<20km) mechanism by which the Gulf Stream exchanges water with subpolar water to the north. Along isopycnals, the front has a sharp compensated temperature-salinity contrast, with distinct mixed water between the two water masses 2 and 4km wide. This mixed water does not increase downstream despite substantial energy available for mixing. A series of streamers detrain this water at the crest of meanders. Subpolar water replaces the mixed water and resharpens the front. The water mass exchange accounts for a northward flux of salt of 0.5-2.5 psum(2)s(-1), (large-scale diffusivity O (100m(2)s(-1))). This is similar to bulk-scale flux estimates of 1.2psum(2)s(-1) and supplies fresher water to the Gulf Stream required for the production of 18 degrees subtropical mode water.
机译:墨西哥湾流是从热带到亚极北大西洋的温暖地表水的主要管道。在这里,我们观察并模拟了亚中尺度(<20km)的机制,通过该机制,墨西哥湾流与北部的亚极水交换了水。沿着等深线,前缘具有明显的补偿温度-盐度对比,在2至4 km宽的两个水团之间存在明显的混合水。尽管有大量可用于混合的能量,但这种混合水在下游不会增加。一系列的彩带使这些水在蜿蜒的山顶上流失。亚极水代替了混合水,并重新磨了正面。水质交换导致盐的北向通量为0.5-2.5 psum(2)s(-1),(大型扩散系数O(100m(2)s(-1)))。这类似于1.2psum(2)s(-1)的大尺度通量估算值,并为生产18度亚热带模式水所需的墨西哥湾流提供了新鲜水。

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