气候变化
极端天气
降水
环境科学
极端气候
气候学
航程(航空)
气候模式
大气科学
地理
全球变暖
耦合模型比对项目
生态学
气象学
生物
地质学
复合材料
材料科学
作者
David R. Easterling,Gerald A. Meehl,Camille Parmesan,Stanley A. Changnon,Thomas R. Karl,Linda O. Mearns
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2000-09-22
卷期号:289 (5487): 2068-2074
被引量:4098
标识
DOI:10.1126/science.289.5487.2068
摘要
One of the major concerns with a potential change in climate is that an increase in extreme events will occur. Results of observational studies suggest that in many areas that have been analyzed, changes in total precipitation are amplified at the tails, and changes in some temperature extremes have been observed. Model output has been analyzed that shows changes in extreme events for future climates, such as increases in extreme high temperatures, decreases in extreme low temperatures, and increases in intense precipitation events. In addition, the societal infrastructure is becoming more sensitive to weather and climate extremes, which would be exacerbated by climate change. In wild plants and animals, climate-induced extinctions, distributional and phenological changes, and species' range shifts are being documented at an increasing rate. Several apparently gradual biological changes are linked to responses to extreme weather and climate events.
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