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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >An inverse method to derive surface fluxes from the closure of oceanic heat and water budgets: Application to the north-western Mediterranean Sea
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An inverse method to derive surface fluxes from the closure of oceanic heat and water budgets: Application to the north-western Mediterranean Sea

机译:从海洋热量和水预算关闭的逆方法中导出表面势态:在西北地中海的应用

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摘要

The large amount of data collected during DeWEX, MOOSE, and HyMeX campaigns in the north-western Mediterranean in 2012-2013 allowed to implement an inverse method to solve the difficult problem of heat and water budget closure. The inverse method is based on the simulation of the observed heat and water budgets, strongly constrained by observations collected during the campaigns and on the deduction of adjusted surface fluxes. The inverse method uses a genetic algorithm that generates 50,000 simulations of a single-column model and optimizes some adjustable coefficients introduced in the surface fluxes. Finally, the single-column model forced by the adjusted fluxes during 1 year and over a test area of about 300 3 300 km~2 simulates the daily mean satellite bulk SST with an accuracy/uncertainty of 0.0116 0.072°C, as well as daily mean SSS and residual buoyancy series deduced from wintertime analyses with an accuracy of 0.01160.008 and 0.0360.012 m~2 s~(-2), respectively. The adjusted fluxes close the annual heat and rescaled water budgets by less than 5 W m~(-2). To our knowledge, this is the first time that such a flux data set is produced. It can thus be considered as a reference for the north-western Mediterranean and be used for estimating other flux data sets, for forcing regional models and for process studies. Compared with the adjusted fluxes, some operational numerical weather prediction models (ARPEGE, NCEP, ERA-INTERIM, ECMWF, and AROME), often used to force oceanic models, were evaluated: they are unable to retrieve the mean annual patterns and values.
机译:在2012 - 2013年北部地中海的德国地中海举行,驼鹿和夏富区活动期间收集的大量数据允许实施一种逆方法来解决热水和水预算闭合的难题。逆方法基于观察到的热量和水预算的模拟,受到在运动期间收集的观察和调整后表面通量的观察结果受到强烈约束。逆方法使用遗传算法,该遗传算法产生单列模型的50,000次模拟,并优化在表面通量中引入的一些可调系数。最后,在1年和测试面积为约300 3 300 km〜2的调整后通量强制的单柱模型模拟了每日平均卫星散装SST,精度/不确定度为0.0116 0.072°C,以及每日从冬季分析中推断的平均SSS和残余浮力系列分析分别为0.01160.008和0.0360.012 m〜2 s〜(-2)。调整后的助熔剂将年度热量和重新缩放的水预算小于5 W m〜(-2)。为了我们的知识,这是第一次产生这种磁通数据集。因此,它可以被视为西北地中海的参考,用于估算其他磁通数据集,用于迫使区域模型和工艺研究。与调整后的助熔剂相比,评估了一些操作数值天气预报模型(Arpege,NCEP,EcmWF和Arome),通常用于迫使海洋模型进行评估:它们无法检索平均年度模式和值。

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