Decadal variations in near-surface wind speed across the Northern Hemisphere on a centennial timescale and their possible causes

IF 6.4 1区 地球科学 Q1 ENVIRONMENTAL SCIENCES
Lin-Wei Li , Jin-Lin Zha , Ting Chuan , Jian Wu , De-Ming Zhao , Wen-Xuan Fan , Yan-Jun Lyu , Hui-Ping Jiang
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Abstract

The reduction in near-surface wind speed (NSWS), followed by its recent recovery, could be a feature of decadal variations. However, existing studies mainly analyse the characteristics and causes of NSWS changes on regional scales and over short periods. The decadal variations and underlying causes of global NSWS changes over long timescales remain underexplored. In this study, we investigated the characteristics of NSWS changes in the Northern Hemisphere (NH) on a centennial scale (1900–2010) and identify the potential causes of decadal variations by using an information flow technique. The results indicate that NSWS in the NH experienced a remarkable decadal variation, increasing during 1900–1945 and 1970–1980 and decreasing during 1945–1970 and 1980–2010. Furthermore, regional differences in the distribution features and decadal variations of NSWS were observed. Asia and North America showed the highest data overlap compared to other regions, reaching 59.4%. The longest period of decadal variation in NSWS was found in North America (14 years), followed by Europe (11 years), with Asia showing the smallest period (10 years). When determining the effects of large-scale ocean–atmosphere circulation fields or internal climate models on NSWS changes, prioritising causality between the two variables and the study period is essential, rather than relying solely on simple correlation analysis. According to the information flow technique, the decadal variations in NSWS over North America during 1950–2010 were linked with the Western Hemisphere Warm Pool, whereas the North Atlantic Oscillation influenced those in Europe. The Tropical Northern Atlantic was the driver over Asia. This study offers a scientific foundation for understanding NSWS characteristics on a centennial timescale and the primary causes of decadal variations in NSWS across the NH.
北半球近地表风速的百年代际变化及其可能的原因
近地面风速(NSWS)的减少,随后又恢复,可能是年代际变化的一个特征。然而,现有的研究主要是分析区域尺度和短时间内NSWS变化的特征和原因。在长时间尺度上,全球NSWS变化的年代际变化及其潜在原因尚未得到充分探讨。本文研究了1900-2010年北半球NSWS的百年变化特征,并利用信息流技术分析了其年代际变化的潜在原因。结果表明:北半球的NSWS在1900 ~ 1945年和1970 ~ 1980年呈显著的年代际变化,在1945 ~ 1970年和1980 ~ 2010年呈下降趋势;此外,NSWS的区域分布特征和年代际变化也存在差异。与其他地区相比,亚洲和北美的数据重叠率最高,达到59.4%。NSWS年代际变化周期最长的是北美(14年),其次是欧洲(11年),亚洲最短(10年)。在确定大尺度海气环流场或内部气候模式对NSWS变化的影响时,必须优先考虑两个变量与研究时段之间的因果关系,而不能单纯依赖简单的相关分析。根据信息流技术,1950-2010年北美地区NSWS的年代际变化与西半球暖池有关,而北大西洋涛动影响欧洲的年代际变化。热带北大西洋是亚洲上空的驱动力。该研究为理解NSWS在百年尺度上的特征和NH NSWS年代际变化的主要原因提供了科学基础。
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来源期刊
Advances in Climate Change Research
Advances in Climate Change Research Earth and Planetary Sciences-Atmospheric Science
CiteScore
9.80
自引率
4.10%
发文量
424
审稿时长
107 days
期刊介绍: Advances in Climate Change Research publishes scientific research and analyses on climate change and the interactions of climate change with society. This journal encompasses basic science and economic, social, and policy research, including studies on mitigation and adaptation to climate change. Advances in Climate Change Research attempts to promote research in climate change and provide an impetus for the application of research achievements in numerous aspects, such as socioeconomic sustainable development, responses to the adaptation and mitigation of climate change, diplomatic negotiations of climate and environment policies, and the protection and exploitation of natural resources.
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