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Improved ENSO simulation in regional coupled GCM using regressive correction method

机译:使用回归校正方法改进区域耦合GCM中的ENSO模拟

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A regressive correction method is presented with the primary goal of improving ENSO simulation in regional coupled GCM. It focuses on the correction of ocean-atmosphere exchanged fluxes. On the basis of numerical experiments and analysis, the method can be described as follows: first, driving the ocean model with heat and momentum flux computed from a long-term observation data set; the produced SST is then applied to force the AGCM as its boundary condition; after that the AGCM's simulation and the corresponding observation can be correlated by a linear regressive formula. Thus the regressive correction coefficients for the simulation with spatial and temporal variation could be obtained by linear fitting. Finally the coefficients are applied to redressing the variables used for the calculation of the exchanged air-sea flux in the coupled model when it starts integration. This method together with the anomaly coupling method is tested in a regional coupled model, which is composed of a global grid-point atmospheric general circulation model and a high-resolution tropical Pacific Ocean model. The comparison of the results shows that it is superior to the anomaly coupling both in reducing the coupled model 'climate drift' and in improving the ENSO simulation in the tropical Pacific Ocean.
机译:提出了一种回归校正方法,其主要目的是改善区域耦合GCM中的ENSO模拟。它着重于校正海洋-大气交换通量。在数值实验和分析的基础上,该方法可以描述如下:首先,利用从长期观测数据集中计算出的热量和动量通量来驱动海洋模型。然后将产生的SST应用于强制AGCM作为其边界条件;之后,可以通过线性回归公式将AGCM的模拟和相应的观察结果关联起来。因此,可以通过线性拟合获得具有空间和时间变化的模拟的回归校正系数。最后,当耦合模型开始积分时,将系数应用于修正用于计算耦合模型中交换的海气通量的变量。该方法与异常耦合方法一起在区域耦合模型中进行了测试,该模型由全球网格点大气总环流模型和高分辨率热带太平洋模型组成。结果的比较表明,它在减少耦合模型“气候漂移”和改善热带太平洋ENSO模拟方面均优于异常耦合。

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