Numerical Experiments with the Coupled Ocean-Earth-Atmosphere Circulation Model and the Analysis of Decadal Variability of Its Main Physical Characteristic

N. Tuchkova, K. Belyaev, Gury Mikhailov
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Abstract

The statistical analysis of ensemble numerical experiments with a sample about 50 members of the Earth System Model outputs of the Max Planck Institute for Meteorology (MPI-ESM) from Hamburg, Germany is analyzed. The set of fifty initial conditions is set up and the model runs for 30 years were integrated from those conditions. The main model physical characteristics such as temperature, sear level and ice coverage are obtained and analyzed. Also, the most probable trajectories using the statistical ensemble Monte-Carlo scheme are investigated. The similarity of the model results with the natural tendencies is also shown. In particular, the specific properties of nonlinear equations are analyzed and discussed. Numerical calculations were carried out on the Lomonosov-2 supercomputer of Lomonosov Moscow State University and Mistral of DKRZ.
海洋-地球-大气耦合环流模式的数值试验及其主要物理特征的年代际变化分析
本文对德国汉堡马克斯·普朗克气象研究所(MPI-ESM)地球系统模式输出的约50个样本的集合数值实验进行了统计分析。建立了一组50个初始条件,并将这些初始条件整合为30年的模型运行。得到并分析了模型的主要物理特征,如温度、海平面和冰覆盖。同时,研究了统计系综蒙特卡洛方案的最可能轨迹。模型结果与自然趋势的相似性也得到了体现。特别地,对非线性方程的具体性质进行了分析和讨论。数值计算在莫斯科国立罗蒙诺索夫大学的罗蒙诺索夫-2超级计算机和DKRZ的Mistral上进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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