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Using the Model Coupling Toolkit to couple earth system models

机译:使用模型耦合工具包耦合地球系统模型

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摘要

Continued advances in computational resources are providing the opportunity to operate more sophisticated numerical models. Additionally, there is an increasing demand for multidisciplinary studies that include interactions between different physical processes. Therefore there is a strong desire to develop coupled modeling systems that utilize existing models and allow efficient data exchange and model control. The basic system would entail model "1" running on "M" processors and model "2" running on "N" processors, with efficient exchange of model fields at predetermined synchronization intervals. Here we demonstrate two coupled systems: the coupling of the ocean circulation model Regional Ocean Modeling System (ROMS) to the surface wave model Simulating WAves Nearshore (SWAN), and the coupling of ROMS to the atmospheric model Coupled Ocean Atmosphere Prediction System (COAMPS). Both coupled systems use the Model Coupling Toolkit (MCT) as a mechanism for operation control and inter-model distributed memory transfer of model variables. In this paper we describe requirements and other options for model coupling, explain the MCT library, ROMS, SWAN and COAMPS models, methods for grid decomposition and sparse matrix interpolation, and provide an example from each coupled system. Methods presented in this paper are clearly applicable for coupling of other types of models.
机译:计算资源的不断进步为操作更复杂的数值模型提供了机会。另外,对包括不同物理过程之间相互作用的多学科研究的需求也在增加。因此,强烈期望开发利用现有模型并允许有效数据交换和模型控制的耦合建模系统。基本系统将需要在“ M”个处理器上运行的模型“ 1”和在“ N”个处理器上运行的模型“ 2”,并以预定的同步间隔高效交换模型字段。在这里,我们演示了两个耦合系统:海洋环流模型,区域海洋建模系统(ROMS)与模拟近海波浪的表面波模型(SWAN)的耦合,以及ROMS与大气模型的耦合,海洋耦合大气预测系统(COAMPS)的耦合。 。两种耦合系统都使用模型耦合工具包(MCT)作为操作控制和模型变量之间模型间分布式内存传输的机制。在本文中,我们描述了模型耦合的要求和其他选项,解释了MCT库,ROMS,SWAN和COAMPS模型,网格分解和稀疏矩阵插值的方法,并提供了每个耦合系统的示例。本文介绍的方法显然适用于其他类型的模型的耦合。

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