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Fixed-Point Observation of Mixed Layer Evolution in the Seasonally Ice-Free Chukchi Sea: Turbulent Mixing due to Gale Winds and Internal Gravity Waves

机译:季节性无冰楚科奇海混合层演化的定点观测:大风和内引力波引起的湍流混合

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摘要

A fixed-point observation using the R/V Mirai was conducted in the ice-free northern Chukchi Sea of the Arctic Ocean during September of 2013. During the program the authors performed repeated microstructure measurements to reveal the temporal evolution of the surface mixed layer and mixing processes in the upper water column. The shelf region was initially characterized by a distinct two-layer system comprising a warmer/fresher top layer and a colder/saltier bottom layer. During the two-week observation period, the top-layer water showed two types of mixing processes: near-surface turbulence due to strong wind forcing and sub-surface mixing due to internal gravity waves. In the first week, when the top layer was stratified with fresh sea ice meltwater, turbulent energy related to internal waves propagated through the subsurface stratification, resulting in a mechanical overturning near the pycnocline, followed by enhanced mixing there. In the second week, gale winds directly stirred up the upper water and then established a deeper homogenous layer. The combination of internal wave mixing and wind-driven turbulence may contribute to releasing the oceanic heat into the atmosphere, consequently promoting the preconditioning of surface water freezing.
机译:2013年9月,在北冰洋北部无冰的楚科奇海进行了使用R / V Mirai进行的定点观测。在该计划期间,作者进行了重复的微结构测量,以揭示表面混合层的时空演化。上部水塔中的混合过程。货架区域最初的特征是一个独特的两层系统,该系统包括一个较暖/新鲜的顶层和一个较冷/更咸的底层。在为期两周的观察期内,顶层水表现出两种混合过程:强风强迫引起的近地表湍流和内部引力波引起的地下混合。在第一周,当顶层用新鲜的海冰融化水分层时,与内部波有关的湍流能量通过地下分层传播,导致比考克林附近发生机械倾覆,然后在该处进行混合。在第二周,强风直接搅动上层水,然后建立更深的均匀层。内部波浪混合和风湍流的结合可能有助于将海洋热量释放到大气中,从而促进地表水冻结的预处理。

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  • 来源
    《Journal of Physical Oceanography》 |2015年第3期|836-853|共18页
  • 作者单位

    Japan Agcy Marine Earth Sci & Technol, Yokosuka, Kanagawa 2370061, Japan|Univ Washington, Appl Phys Lab, Polar Sci Ctr, Seattle, WA 98105 USA;

    Japan Agcy Marine Earth Sci & Technol, Yokosuka, Kanagawa 2370061, Japan;

    Natl Inst Polar Res, Tokyo, Japan|Japan Agcy Marine Earth Sci & Technol, Yokosuka, Kanagawa 2370061, Japan;

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