Advancing Our Understanding of Eddy-driven Jet Stream Responses to Climate Change – A Roadmap

IF 9.3 1区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES
Albert Ossó, Ileana Bladé, Alexey Karpechko, Camille Li, Douglas Maraun, Olivia Romppainen-Martius, Len Shaffrey, Aiko Voigt, Tim Woollings, Giuseppe Zappa
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引用次数: 0

Abstract

Purpose of Review

Extratropical jets and associated storm tracks significantly influence weather and regional climate across various timescales. Understanding jet responses to climate change is essential for reliable regional climate projections. This review serves two main purposes: (1) to provide an accessible overview of extratropical jet dynamics and a comprehensive examination of current challenges and uncertainties in predicting jet responses to greenhouse gas increases and (2) to suggest innovative experiments to advance our understanding of these responses.

Recent Findings

While successive generations of climate model ensembles consistently project a mean poleward shift of the midlatitude zonal-mean maximum winds, there remains considerable intermodel spread and large uncertainty across seasonal and regional jet responses. Of particular note is our limited understanding of how these jets respond to the intricate interplay of multiple concurrent drivers, such as the strong warming in polar and tropical regions, and the relative importance of each factor. Furthermore, the difficulty of simulating processes requiring high resolution, such as those linked to sharp sea surface temperature gradients or diabatic effects related to tropical convection and extratropical cyclones, has historically hindered progress.

Summary

We advocate for a collaborative effort to enhance our understanding of the jet stream response to climate change. We propose a series of new experiments that take advantage of recent advances in computing power and modelling capabilities to better resolve small-scale processes such as convective circulations, which we consider essential for a good representation of jet dynamics.

Abstract Image

推进我们对涡流驱动喷气流应对气候变化的认识--路线图
审查目的外热带喷流和相关风暴轨道在不同时间尺度上对天气和区域气候有重大影响。了解喷流对气候变化的响应对于可靠的区域气候预测至关重要。本综述有两个主要目的:(1)提供关于外热带喷流动力学的简明概述,并全面探讨目前在预测喷流对温室气体增加的响应方面所面临的挑战和不确定性;(2)提出创新性实验建议,以促进我们对这些响应的理解。最近的研究结果虽然连续几代气候模式集合一致预测中纬度地带性平均最大风向极地移动,但在季节性和区域性喷流响应方面仍存在相当大的模式间差异和不确定性。特别值得注意的是,我们对这些喷流如何应对多种并发驱动因素的复杂相互作用(如极地和热带地区的强烈变暖)以及每个因素的相对重要性了解有限。此外,由于难以模拟需要高分辨率的过程,例如与急剧的海面温度梯度或与热带对流和外热带气旋相关的二重效应有关的过程,这一直阻碍着研究的进展。我们提出了一系列新实验,利用最近计算能力和建模能力的进步,更好地解析对流环流等小尺度过程。
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
Current climate change reports
Current climate change reports Environmental Science-Global and Planetary Change
CiteScore
20.30
自引率
0.00%
发文量
10
期刊介绍: Current Climate Change Reports is dedicated to exploring the most recent research and policy issues in the dynamically evolving field of Climate Change. The journal covers a broad spectrum of topics, encompassing Ecological Impacts, Advances in Modeling, Sea Level Projections, Extreme Events, Climate Feedback and Sensitivity, Hydrologic Impact, Effects on Human Health, and Economics and Policy Issues. Expert contributors provide reviews on the latest research, assess the effectiveness of available options, and engage in discussions about special considerations. All articles undergo a thorough peer-review process by specialists in the field to ensure accuracy and objectivity.
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