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首页> 外文期刊>Quarterly Journal of the Royal Meteorological Society >Sensitivity analysis and metamodels for the bulk parametrization of turbulent air–sea fluxes
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Sensitivity analysis and metamodels for the bulk parametrization of turbulent air–sea fluxes

机译:湍流空气海流散装参数化的敏感性分析与元典

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摘要

State‐of‐the‐art climate models rely on bulk formulae arising from the Monin–Obukhov semi‐empirical theory to estimate turbulent air–sea fluxes. The mathematical structure of those formulae implies several difficulties when trying to study the numerical properties of coupling algorithms used for practical applications. This article introduces a methodology for building physically realistic approximations of existing bulk formulae which would also satisfy suitable mathematical properties (explicit character, regularity, differentiability). This is achieved by applying the Sobol' method to compute sensitivity indices in order to reduce the number of inputs and derive a simple metamodel for the parametrization of turbulent air–sea fluxes. Numerical results show excellent agreement between our approximations and the standard bulk formulae. In particular, single‐column simulations using the TOGA–COARE experiment within the LMDZ atmospheric model show negligible changes in numerical results.
机译:最先进的气候模型依赖于Monin-Obukhov半实证理论引起的批量公式来估算动荡的空中流量。这些公式的数学结构在尝试研究用于实际应用的耦合算法的数值时意味着几个困难。本文介绍了一种用于构建现有批量公式的物理现实近似的方法,该方法也将满足合适的数学特性(显式角色,规律性,可分利用)。这是通过应用Sobol'方法来计算灵敏度指数来实现的,以减少输入的数量并导出湍流空中助熔剂参数化的简单元模型。数值结果显示了我们的近似和标准散装公式之间的良好一致性。特别地,使用LMDZ大气模型内的Toga-CoARA实验的单列模拟显示了数值结果的可忽略的变化。

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