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首页> 外文期刊>Journal of the Atmospheric Sciences >A Formal Analysis of the Feedback Concept in Climate Models. Part III: Feedback Dynamics and the Seasonal Cycle in a Floquet Analysis
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A Formal Analysis of the Feedback Concept in Climate Models. Part III: Feedback Dynamics and the Seasonal Cycle in a Floquet Analysis

机译:对气候模型中反馈概念的形式分析。第三部分:浮球分析中的反馈动力学和季节性周期

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摘要

This article introduces a new decomposition of climate feedback mechanisms based on their characteristic times. As the last of a series of three, it complements the first two parts by Lahellec and Dufresne to give a comprehensive review of climate feedbacks that will help to ensure consistency between practice and theory. In Parts I and II, analysis of the climate response to perturbations at the large spatial scales and time scales necessary to obtain linearity restricted the characterization to the slow components of the response. This part incorporates the fast mechanisms' impact on the climate feedbacks, bringing the seasonal cycle into the analysis. Thanks to the Floquet theory, the authors could extend the formal framework of Parts I and II to incorporate the fast mechanisms. An illustration of the formal results with a simple 1D model highlights a clear distinction between the role of fast (intraseasonal) and slow (decadal) feedbacks, with an application to the water-cycle feedback of Part II. The same implementation of the Gateaux difference in LMDZ, the GCM of LMD, as in Part II is used for comparing results with the authors' toy model. This comparison essentially validates the Floquet decomposition obtained with the toy model: the fast component linked to precipitation is contributing negatively to the water-cycle feedback while the slow component is building up the positive feedback. The comparison also provides further insight on the sensitivity of models' precipitation to climate warming.
机译:本文介绍了基于特征时间的气候反馈机制的新分解。作为这三个系列中的最后一个,它是对Lahellec和Dufresne的前两个部分的补充,对气候反馈进行了全面的回顾,这将有助于确保实践和理论之间的一致性。在第一部分和第二部分中,对获得线性度所必需的大空间尺度和时间尺度上的摄动的气候响应的分析将其表征限制在响应的慢分量上。这一部分结合了快速机制对气候反馈的影响,将季节性周期纳入分析。借助Floquet理论,作者可以扩展第I部分和第II部分的正式框架,以纳入快速机制。用一个简单的一维模型对形式结果进行说明,突出了快速(季节内)和缓慢(年代际)反馈的作用之间的明显区别,并将其应用于第二部分的水循环反馈。与第二部分中LMDZ中的Gateaux差异(LMD的GCM)相同的实现方式用于将结果与作者的玩具模型进行比较。这种比较从本质上验证了通过玩具模型获得的Floquet分解:与降水有关的快速成分对水循环反馈有负面影响,而较慢的成分则对水循环反馈有正面影响。比较还提供了关于模型降水对气候变暖敏感性的进一步见解。

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