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Deep-ocean mixing driven by small-scale internal tides

机译:小规模内部潮汐驱动的深海混合

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摘要

Turbulent mixing in the ocean is key to regulate the transport of heat, freshwater and biogeochemical tracers, with strong implications for Earth’s climate. In the deep ocean, tides supply much of the mechanical energy required to sustain mixing via the generation of internal waves, known as internal tides, whose fate—the relative importance of their local versus remote breaking into turbulence—remains uncertain. Here, we combine a semi-analytical model of internal tide generation with satellite and in situ measurements to show that from an energetic viewpoint, small-scale internal tides, hitherto overlooked, account for the bulk (>50%) of global internal tide generation, breaking and mixing. Furthermore, we unveil the pronounced geographical variations of their energy proportion, ignored by current parameterisations of mixing in climate-scale models. Based on these results, we propose a physically consistent, observationally supported approach to accurately represent the dissipation of small-scale internal tides and their induced mixing in climate-scale models.
机译:海洋中的湍流混合是调节热量,淡水和生物地球化学示踪剂传输的关键,这对地球的气候具有重大影响。在深海中,潮汐通过产生内部波浪(称为内部潮汐)来提供维持混合所需的大部分机械能,其命运(其局部或远距离扰动相对而言的相对重要性)仍然不确定。在这里,我们将内部潮汐产生的半分析模型与卫星和原位测量相结合,以表明从能量的观点来看,迄今为止被忽略的小规模内部潮汐占全球内部潮汐产生的大部分(> 50%) ,破碎和混合。此外,我们揭示了其能量比例的明显地理变化,被气候尺度模型中当前的混合参数化忽略了。基于这些结果,我们提出了一种物理上一致的,受观测支持的方法,可以准确地表示小规模内潮的消散及其在气候尺度模型中的混合作用。

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