East shift of Canada severe hail activities in a changing climate

IF 4.5 2区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES Atmospheric Research Pub Date : 2024-12-09 DOI:10.1016/j.atmosres.2024.107867
Zuohao Cao
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Abstract

Severe hail activities have significant impacts on our society because they damage property and are dangerous to people and animals. However, we have little knowledge on recent changes in geographic locations of severe hail activity center over Canada. Prior to exploring this, we have carried out Canada hail data consistency and reliability checks using solid trend analyses of three independent methods for time series of hail counts and days, and robust verifications of reported hail data by a recently developed approach of sample generation by replacement. Here, we discover for the first time a statistically significant east shift of Canada severe hail activity and total hail activity using discriminant analysis. The spatial shift is from the western portion of continental Canada during 2005–2013 to the eastern Canada with a maritime environment during 2014–2022. With increase of hail severity, the hail activities increase from the colder period 2005–2013 to the warmer period 2014–2022. Our composite analyses show that over the continental Canada, the hail activities are enriched through thermodynamically driven convective instability and precipitable water associated with the warming climate, as well as dynamically driven processes such as vertical wind shear and vertically integrated water vapor flux convergence. Over the maritime Canada with the colder condition, the hail activities are enhanced by dynamically driven moisture advection and convergence as well as vertical wind shear, thermodynamically driven process of precipitable water, and partially due to convective instability. This research promotes our understanding of climate change impact on hail activities, shedding lights on long-term hail projection, adaptation, and mitigation strategies.
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气候变化中加拿大剧烈冰雹活动的东移
严重的冰雹活动对我们的社会有重大影响,因为它们破坏财产,对人和动物都有危险。然而,我们对加拿大强冰雹活动中心最近的地理位置变化知之甚少。在探索这一点之前,我们使用三种独立方法对冰雹计数和天数的时间序列进行了可靠的趋势分析,并通过最近开发的替换生成样本的方法对报告的冰雹数据进行了可靠的验证,从而进行了加拿大冰雹数据的一致性和可靠性检查。通过判别分析,首次发现加拿大强雹活度和总雹活度在统计上有显著的东移。从2005-2013年的加拿大大陆西部到2014-2022年的加拿大东部的海洋环境的空间转移。随着冰雹强度的增加,冰雹活动从2005-2013年偏冷期增加到2014-2022年偏暖期。综合分析结果表明,在加拿大大陆地区,与气候变暖相关的热力驱动对流不稳定和可降水量,以及垂直风切变和垂直整合水汽通量辐合等动力驱动过程,使冰雹活动更加丰富。在较冷条件下的加拿大海区,动力驱动的水汽平流辐合、垂直风切变、可降水量的热力驱动过程以及对流不稳定等因素增强了冰雹活动。这项研究促进了我们对气候变化对冰雹活动的影响的理解,为长期冰雹预测、适应和缓解策略提供了线索。
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来源期刊
Atmospheric Research
Atmospheric Research 地学-气象与大气科学
CiteScore
9.40
自引率
10.90%
发文量
460
审稿时长
47 days
期刊介绍: The journal publishes scientific papers (research papers, review articles, letters and notes) dealing with the part of the atmosphere where meteorological events occur. Attention is given to all processes extending from the earth surface to the tropopause, but special emphasis continues to be devoted to the physics of clouds, mesoscale meteorology and air pollution, i.e. atmospheric aerosols; microphysical processes; cloud dynamics and thermodynamics; numerical simulation, climatology, climate change and weather modification.
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