Effects of macro vs. micro initialization and ocean initial-condition memory on the evolution of ensemble spread in the CESM2 large ensemble.

IF 3.8 2区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
Climate Dynamics Pub Date : 2025-01-01 Epub Date: 2024-12-24 DOI:10.1007/s00382-024-07553-z
Clara Deser, Who M Kim, Robert C J Wills, Isla R Simpson, Steve Yeager, Gokhan Danabasoglu, Keith Rodgers, Nan Rosenbloom
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引用次数: 0

Abstract

"Single Model initial-condition Large Ensembles" (SMILEs) conducted with Earth system models have transformed our ability to quantify internal climate variability and forced climate change at local and regional scales. An important consideration in their experimental design is the choice of initialization procedure as this influences the duration of initial-condition memory, with implications for interpreting the temporal evolution of both the ensemble-mean and ensemble-spread. Here we leverage the strategic design of the 100-member Community Earth System Model version 2 (CESM2) SMILE to investigate the dependence of ensemble spread on the method of initialization (micro- vs. macro- perturbations) and the effects of ocean initial-condition memory. We find that the evolution of ensemble spread in 10-year low-pass filtered data is relatively insensitive to the method of initialization beyond the second decade, with the notable exception of the tropical Indo-Pacific in the 4th decade, when macro-initialization significantly enhances ensemble spread, possibly as a result of a state-dependent response to major volcanic activity. Initial-condition memory associated with the chosen Atlantic Meridional Overturning Circulation (AMOC) states unfolds in two stages: First, in the North Atlantic lasting 4-5 decades, and subsequently, in the Indo-Pacific sector of the Southern Ocean appearing 35-years after initialization and lasting 3-4 decades. Known AMOC dynamics explain the first stage, but the role of AMOC and the mechanisms responsible for the delayed appearance of initial-condition memory in the Southern Ocean remain to be fully elucidated. Implications and recommendations for the design of future SMILEs are provided.

Supplementary information: The online version contains supplementary material available at 10.1007/s00382-024-07553-z.

宏观初始化与微观初始化及海洋初始条件记忆对CESM2大集合扩散演化的影响
利用地球系统模型进行的“单模式初始条件大集合”(SMILEs)已经改变了我们量化局地和区域尺度内气候变率和强迫气候变化的能力。在他们的实验设计中,一个重要的考虑因素是初始化过程的选择,因为初始化过程会影响初始条件记忆的持续时间,这对解释集合均值和集合扩散的时间演化都有影响。在这里,我们利用100个成员的社区地球系统模型版本2 (CESM2) SMILE的战略设计来研究集合传播对初始化方法(微观与宏观摄动)的依赖以及海洋初始条件记忆的影响。我们发现,在第2个10年之后,10年低通滤波数据的总体扩展演化对初始化方法相对不敏感,但第4个10年的热带印度洋-太平洋除外,宏观初始化显著增强了总体扩展,这可能是由于对主要火山活动的状态依赖响应。与所选择的大西洋经向翻转环流(AMOC)状态相关的初始条件记忆分两个阶段展开:首先,在北大西洋持续4-5年,随后,在南大洋的印度洋-太平洋部分出现初始化35年后,持续3-4年。已知的AMOC动力学解释了第一阶段,但AMOC的作用和导致南大洋初始条件记忆延迟出现的机制仍有待充分阐明。为未来的smile设计提供了启示和建议。补充信息:在线版本包含补充资料,可在10.1007/s00382-024-07553-z获得。
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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来源期刊
Climate Dynamics
Climate Dynamics 地学-气象与大气科学
CiteScore
8.80
自引率
15.20%
发文量
483
审稿时长
2-4 weeks
期刊介绍: The international journal Climate Dynamics provides for the publication of high-quality research on all aspects of the dynamics of the global climate system. Coverage includes original paleoclimatic, diagnostic, analytical and numerical modeling research on the structure and behavior of the atmosphere, oceans, cryosphere, biomass and land surface as interacting components of the dynamics of global climate. Contributions are focused on selected aspects of climate dynamics on particular scales of space or time. The journal also publishes reviews and papers emphasizing an integrated view of the physical and biogeochemical processes governing climate and climate change.
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