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Isopycnal mixing of interhemispheric intermediate waters by subthermocline eddies east of the Philippines

机译:菲律宾以东的亚热线涡旋对半球中间水的等渗混合

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摘要

Both sporadic observations and modelling studies suggest that subthermocline eddies (SEs) exist east of the Philippines, where interhemispheric waters meet. However, effects of SEs on water mass mixing have never been observed. Here, using data from mooring and buoy deployed in the frontal region of the interhemispheric water masses, we show for the first time that the SEs act as an “underwater mixer” of intermediate waters from north and south Pacific oceans. The SEs have typical swirl speeds of 0.1~0.4 m s−1 between 200 and 800 m depth with a dominant period of ~90 days. Variation in intermediate water salinity also had a period of ~90 days, lagging eddy speed by ~8 days. Horizontal eddy diffusivity representative of eddy mixing rate was quantified using a mixing-length framework. Horizontal eddy diffusivity had both surface and subthermocline maxima. The vertically varying eddy diffusivity can be used to improve parameterization of eddy stirring in the tropical Pacific by coarse-resolution ocean climate models. The effect of the SEs on mixing of intermediate water masses seems not resolved by available eddy-resolving ocean models typically used for this region.
机译:零星的观测和模型研究均表明,亚高温系涡(SEs)存在于菲律宾东部,那里是半球水之间的汇合处。但是,从未观察到SEs对水团混合的影响。在这里,利用来自跨半球水团前沿区域的系泊和浮标的数据,我们首次表明SE充当了来自北太平洋和南太平洋的中间水域的“水下混合器”。 SE的典型旋流速度在200至800μm深度之间为0.1〜0.4 m s -1 ,主周期为90天。中间水盐度的变化也有约90天的时间,使涡流速度落后了约8天。使用混合长度框架量化代表涡流混合速率的水平涡流扩散率。水平涡流扩散率同时具有表面和亚高温曲线的最大值。通过粗分辨率海洋气候模型,垂直变化的涡流扩散率可用于改善热带太平洋涡流搅动的参数化。 SEs对中间水团混合的影响似乎无法通过通常用于该地区的可用的解决涡流的海洋模型来解决。

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