将极端气候和天气归因于北半球海冰和陆雪:进展、挑战和前进方向

IF 8.5 1区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES
Kunhui Ye, Judah Cohen, Hans W. Chen, Shiyue Zhang, Dehai Luo, Mostafa Essam Hamouda
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引用次数: 0

摘要

海冰和雪是冰冻圈和气候系统的重要组成部分。在气候变化的影响下,北半球的海冰和春雪都在以惊人的速度减少。北半球海冰和积雪的变化与各种气候和极端天气有关,包括寒流、热浪、干旱和野火。了解这些联系将有助于预测气候和极端天气。然而,关于这方面的现有工作在很大程度上是分散的,并且在物理途径和方法方面存在很大的不确定性。这阻碍了在将气候和天气极端事件归因于海冰和积雪变化方面取得进一步实质性进展,并有可能丧失有效减缓气候变化的一个关键窗口期。本文综述了气候和天气极端事件与海冰和雪变化之间的联系、物理途径和不确定性,并对未来的研究方向提出了建议。通过对海冰和雪采用相同的框架,我们强调了它们的综合影响以及冰冻圈对气候系统的反馈。我们建议,未来的研究将受益于改进观测网络,使用多种证据线解决因果关系和联系的复杂性,采用大集成方法和人工智能,实现不同方法/学科之间的协同,扩大背景,以及协调的国际合作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Attributing climate and weather extremes to Northern Hemisphere sea ice and terrestrial snow: progress, challenges and ways forward

Attributing climate and weather extremes to Northern Hemisphere sea ice and terrestrial snow: progress, challenges and ways forward

Sea ice and snow are crucial components of the cryosphere and the climate system. Both sea ice and spring snow in the Northern Hemisphere (NH) have been decreasing at an alarming rate in a changing climate. Changes in NH sea ice and snow have been linked with a variety of climate and weather extremes including cold spells, heatwaves, droughts and wildfires. Understanding of these linkages will benefit the predictions of climate and weather extremes. However, existing work on this has been largely fragmented and is subject to large uncertainties in physical pathways and methodologies. This has prevented further substantial progress in attributing climate and weather extremes to sea ice and snow change, and will potentially risk the loss of a critical window for effective climate change mitigation. In this review, we synthesize the current progress in attributing climate and weather extremes to sea ice and snow change by evaluating the observed linkages, their physical pathways and uncertainties in these pathways, and suggesting ways forward for future research efforts. By adopting the same framework for both sea ice and snow, we highlight their combined influence and the cryospheric feedback to the climate system. We suggest that future research will benefit from improving observational networks, addressing the causality and complexity of the linkages using multiple lines of evidence, adopting large-ensemble approaches and artificial intelligence, achieving synergy between different methodologies/disciplines, widening the context, and coordinated international collaboration.

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来源期刊
npj Climate and Atmospheric Science
npj Climate and Atmospheric Science Earth and Planetary Sciences-Atmospheric Science
CiteScore
8.80
自引率
3.30%
发文量
87
审稿时长
21 weeks
期刊介绍: npj Climate and Atmospheric Science is an open-access journal encompassing the relevant physical, chemical, and biological aspects of atmospheric and climate science. The journal places particular emphasis on regional studies that unveil new insights into specific localities, including examinations of local atmospheric composition, such as aerosols. The range of topics covered by the journal includes climate dynamics, climate variability, weather and climate prediction, climate change, ocean dynamics, weather extremes, air pollution, atmospheric chemistry (including aerosols), the hydrological cycle, and atmosphere–ocean and atmosphere–land interactions. The journal welcomes studies employing a diverse array of methods, including numerical and statistical modeling, the development and application of in situ observational techniques, remote sensing, and the development or evaluation of new reanalyses.
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