CMIP6情景下日本北海道中部极端温度和降水预估

IF 3.5 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES
Lulu Zhou, Shilei Peng, Renjun Liao, Kunihito Mihara, Kanta Kuramochi, Yo Toma, Ryusuke Hatano
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引用次数: 0

摘要

全球极端气候事件正在加剧,给各行业带来的风险越来越大。了解极端气候的时空格局和对气候变化的响应对于有效管理至关重要,特别是在区域尺度上。本研究考察了日本东北部石kari河流域(IRB)的极端温度和降水,以及复合干热事件(CDHEs),这是一个具有重要社会经济意义的地区。基于耦合模式比对项目第6期统计缩微数据集,重点分析了极端温度/降水和极端高温天气多情景下的时空变化。结果表明:1985—2014年,中国中部极端高温、极端干旱和强降水事件呈增加趋势,受北太平洋涛动和南方涛动指数的显著影响。未来的预估表明,气温变暖和降雨减少会对极端温度和降水产生不对称的影响,预计暖期和高温高温天气会增加,但潮湿持续时间会增加,强降雨会减少。排放情景分析表明,低排放情景(SSP1-2.6)可缓解其恶化,特别是对cdhs(减少139%)。此外,空间格局分析还揭示了极端温度和降水的区域异质性,北部山区更容易发生极端温度事件,南部平原地区(如札幌市)则经历了长期干旱和高温高温。这项研究为气候风险管理和适应策略提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Extremes of Temperature and Precipitation Under CMIP6 Scenarios Projections Over Central Hokkaido, Japan

Extremes of Temperature and Precipitation Under CMIP6 Scenarios Projections Over Central Hokkaido, Japan

Climate extreme events are intensifying globally, posing increasing risks across various sectors. Understanding climate extremes' spatiotemporal patterns and responses to climate change is crucial for effective management, especially on a regional scale. This study examines temperature and precipitation extremes, as well as compound dry-hot events (CDHEs), in the Ishikari River basin (IRB) of Northeastern Japan, an area of significant socioeconomic importance. We focus on spatiotemporal analysis under multiple scenarios of temperature/precipitation extremes and CDHEs based on statistical downscaled datasets from the Coupled Model Intercomparison Project Phase 6. Results indicate that IRB underwent increased trends of extreme hot periods, extreme droughts, and heavy rainfalls during 1985–2014, which are significantly affected by the North Pacific Oscillation and Southern Oscillation Index. Future projections show that warming temperatures and less rainfall shift asymmetrical impacts on temperature and precipitation extremes, expecting increased warm spells and CDHEs but increased wet durations and less heavy rainfalls. Emission scenarios analysis suggests low-emission scenarios (SSP1-2.6) could mitigate their exacerbations, especially for CDHEs (decreased by 139%). Moreover, spatial-pattern analysis reveals regional heterogeneity in temperature and precipitation extremes, with northern mountainous regions more susceptible to thermal extremes and southern plain regions (e.g., Sapporo city) experiencing prolonged drought and CDHEs. This study provides valuable insights into climate risk management and adaptation strategies.

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来源期刊
International Journal of Climatology
International Journal of Climatology 地学-气象与大气科学
CiteScore
7.50
自引率
7.70%
发文量
417
审稿时长
4 months
期刊介绍: The International Journal of Climatology aims to span the well established but rapidly growing field of climatology, through the publication of research papers, short communications, major reviews of progress and reviews of new books and reports in the area of climate science. The Journal’s main role is to stimulate and report research in climatology, from the expansive fields of the atmospheric, biophysical, engineering and social sciences. Coverage includes: Climate system science; Local to global scale climate observations and modelling; Seasonal to interannual climate prediction; Climatic variability and climate change; Synoptic, dynamic and urban climatology, hydroclimatology, human bioclimatology, ecoclimatology, dendroclimatology, palaeoclimatology, marine climatology and atmosphere-ocean interactions; Application of climatological knowledge to environmental assessment and management and economic production; Climate and society interactions
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