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A Quasi-Geostrophic Coupled Model (Q-GCM)

机译:准地转耦合模型(Q-GCM)

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摘要

The design and implementation of a midlatitude basin-scale coupled climate model are described. The development of the model is motivated by the clear indications of important low-frequency midlatitude ocean variability in ocean-only models and the lack of the same in coupled climate models. Currently, the best comprehensive coupled climate models run at resolutions far coarser than those needed to model intrinsic ocean variability. The model presented here is an attempt to explicitly include ocean eddies within the framework of an idealized climate setting. It is proposed that the model will help resolve how intrinsic ocean variability is altered by coupling and the extent to which such variability may force the climate. The objective of this paper is to describe the theory behind the model formulation and its implementation. The basic model consists of a quasigeostrophic channel atmosphere coupled to a simple, rectangular quasi-geostrophic ocean. Heat and momentum exchanges between the ocean and the atmosphere are mediated via mixed-layer models, and the system is driven by steady, latitudinally dependent incident solar radiation. Model spinup is described, some basic descriptors of the solution are discussed, and it is argued that the model exhibits skill in capturing essential features of the midlatitude climate system.
机译:描述了中纬度盆地尺度耦合气候模型的设计和实现。该模型的发展是由仅在海洋模式中明显显示出重要的低频中纬度海洋变异性以及在耦合气候模式中缺乏相同性的动机所推动的。当前,最佳的综合耦合气候模型的分辨率远比对固有海洋变率建模所需的分辨率要粗糙。这里介绍的模型是试图在理想的气候环境框架内明确包括海洋涡流。建议该模型将有助于解决固有海洋变率如何通过耦合变化以及这种变化可能在多大程度上强迫气候。本文的目的是描述模型制定及其实施背后的理论。基本模型由准地转通道大气和简单的矩形准地转海洋组成。海洋与大气之间的热和动量交换是通过混合层模型进行的,该系统由稳定的,纬度相关的入射太阳辐射驱动。描述了模型自旋,讨论了该解决方案的一些基本描述符,并认为该模型在捕获中纬度气候系统的基本特征方面具有技巧。

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