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Validation of Thorpe-scale-derived vertical diffusivities against microstructure measurements in the Kerguelen region

机译:脊髓尺度衍生的垂直扩散性验证kergucen地区微观结构测量的垂直扩散性

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The Thorpe scale is an energy-containing vertical overturning scale of large eddies associated with shear-generated turbulence. This study investigates indirect estimates of vertical diffusivities from the Thorpe scale method in the polar front region east of the Kerguelen Islands based on fine-scale density profiles gathered during the 2011 KEOPS2 (KErguelen Ocean and Plateau compared Study 2) cruise. These diffusivities are validated in comparison with diffusivities estimated from the turbulence dissipation rate directly measured via a TurboMAP (Turbulence ocean Microstructure Acquisition Profiler) microstructure profiler. The results are sensitive to the choice of the diffusivity parameterization and the overturn ratio Ro, and the optimal results have been obtained from the parameterization by Shih et al. (2005) and the Ro = 0.25 criterion, rather than the parameterization by Osborn (1980) and the Ro = 0.2 criterion originally suggested by Gargett and Garner (2008). The Thorpe-scale-derived diffusivities in the KEOPS2 region show a high degree of spatial variability, ranging from a canonical value of O(105) m2 s?1 in the Winter Water layer and in the area immediately north of the polar front to a high value of O(104) m2 s?1 in the seasonal thermocline between the surface mixed layer and the Winter Water. The latter high diffusivities are found especially over the shallow plateau southeast of the Kerguelen Islands and along the polar front that is attached to the escarpment northeast of the islands. The interaction of strong frontal flow with prominent bottom topography likely causes the observed elevated mixing rates.
机译:Thorpe Scale是一种含能的垂直覆盖尺度的大型漩涡,其与剪切产生的湍流相关。本研究研究了基于2011年Keops2(Kerguelen海洋和高原研究2)巡航的微级密度型材,基于微级密度剖面,从摇动群岛东部的极地前区域中的垂直扩散性的间接估计。与通过通过TurboMap(湍流海洋微观结构采集分析仪)微观结构分布器直接测量的湍流耗散速率估计的漫射耗散率估计的扩散性进行了验证。结果对扩散性参数化和截止比RO的选择敏感,并且已经从Shih等人的参数化获得了最佳结果。 (2005)和RO = 0.25标准,而不是由奥斯贝(1980)的参数化和RO = 0.2标准,最初由Gargett和Garner(2008)建议。 Keops2区域中的索普级衍生的扩散性显示出高度的空间变异性,从冬季水层中的O(105)M2 S?1的规范值以及在北方北方的区域内的区域中的规范值。高值O(104)M2 S?1在表面混合层和冬季水之间的季节性热量下。后者的高扩散性特别是在Kergureen岛东南部的浅景观高原上,沿着岛上的悬崖上沿着岛屿的悬崖。具有突出底层地形的强额流的相互作用可能导致观察到的升高的混合速率。

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