碳中和分类(2)
气候变化(2)
在“碳中和文献”中,命中:2条,耗时:0.0219868 秒
1.玉龙雪山现代季风温冰川对气候变化的响应
机构:中国科学院寒区旱区环境与工程研究所冰冻圈科学国家重点实验室;中国科学院大学;兰州大学资源环境学院;
关键词:玉龙雪山;;季风温冰川;;冰川响应;;气候变化
摘要:以玉龙雪山冰川区为研究区,基于野外观测数据及遥感数据,分析玉龙雪山现代季风温冰川的响应过程,探讨冰川变化的主要原因。结果表明:玉龙雪山地区冰川持续退缩明显;近年来白水1号冰川冰裂隙数量增多,规模扩大,冰川退缩速度不断加快;冰川冰体温度升高,从而导致冰川消融加快;2004和2009年在玉龙雪山东坡发生的崩塌事件,是冰川消融加剧,冰体温度上升的直接反应;气候变暖是玉龙雪山冰川退缩的主要原因。
年:2013
出版单位:地理科学
2.1961-2008年中国西南地区极端气候变化幅度的海拔效应(英文)
机构:State Key Laboratory of Cryosphere Science/Yulong Snow Mountain Glaciers and Environmental Observation Station, Cold and Arid Region Environment and Engineering Research Institute,CAS;Graduate University of Chinese Academy of Sciences;School of Environment and Development, University of Manchester, Manchester M13 9PL;
摘要:A total of 12 indices of temperature extremes and 11 indices of precipitation ex-tremes at 111 stations in southwestern China at altitudes of 285-4700 m were examined for the period 1961-2008. Significant correlations of temperature extremes and elevation in-cluded the trends of diurnal temperature range, frost days, ice days, cold night frequency and cold day frequency. Regional trends of growing season length, warm night frequency, coldest night and warmest night displayed a statistically significant positive correlation with altitude. These characteristics indicated the obvious warming with altitude. For precipitation extreme indices, only the trends of consecutive dry days, consecutive wet days, wet day precipitation and the number of heavy precipitation days had significant correlations with increasing alti-tude owing to the complex influence of atmospheric circulation. It also indicated the increased precipitation mainly at higher altitude areas, whereas the increase of extreme precipitation events mainly at lowers altitude. In addition, the clearly local influences are also crucial on climate extremes. The analysis revealed an enhanced sensitivity of climate extremes to ele-vation in southwestern China in the context of recent warming.
年:2012
出版单位:Journal of Geographical Sciences
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