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Observed and simulated submesoscale vertical pump of an anticyclonic eddy in the South China Sea

机译:观察和模拟南海反气旋涡流垂直泵

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摘要

Oceanic mesoscale eddies with typical sizes of 30–200?km contain more than half of the kinetic energy of the ocean. With an average lifespan of several months, they are major contributors to the transport of heat, nutrients, plankton, dissolved oxygen and carbon in the ocean. Mesoscale eddies have been observed and studied over the past 50 years, nonetheless our understanding of the details of their structure remains incomplete due to lack of systematic high-resolution measurements. To bridge this gap, a survey of a mesoscale anticyclone was conducted in early 2014 in the South China Sea capturing its structure at submesoscale resolution. By modeling an anticyclone of comparable size and position at three horizontal resolutions the authors verify the resolution requirements for capturing the observed variability in dynamical quantities, and quantify the role of ageostrophic motions on the vertical transport associated with the anticyclone. Results indicate that different submesoscale processes contribute to the vertical transport depending on depth and distance from the eddy center, with frontogenesis playing a key role. Vertical transport by anticyclones cannot be reliably estimated by coarse-resolution or even mesoscale-resolving models, with important implications for global estimates of the eddy-driven vertical pumping of biophysical and chemical tracers.
机译:典型尺寸为30-200 km的海洋Mesoscale eddies包含超过海洋的一半以上的动能。均为几个月的平均寿命,他们是在海洋中运输热量,营养素,浮游生物,溶解氧和碳的主要贡献者。尽管如此,我们在过去的50年中观察并研究了Mescle Eddies,因此我们对其结构的细节的理解,由于缺乏系统的高分辨率测量,他们的结构细节仍然不完整。为了弥合这一差距,在2014年初在南海初进行了对Mescle antiCyclone的调查,在南海捕获了其在基本尺度决议的结构中。通过在三个水平分辨率下建模可比大小和位置的可比性尺寸和位置,验证了用于捕获动态量的观察到可变性的分辨率要求,并量化肺病的作用对与抗气岩相关的垂直传输。结果表明,不同的基础尺度过程促进了垂直传输,这取决于埃迪中心的深度和距离,迎来关键作用。通过粗糙分辨率甚至Messcale解决模型不能可靠地估计反气旋的垂直传输,对生物物理和化学示踪剂的涡流垂直泵送的全球估计有重要意义。

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