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新生代青藏高原生长对东亚水循环及生态系统的影响 被引量:4
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作者 李树峰 赵佳港 +5 位作者 Alex Farnsworth Paul J.Valdes 刘佳 黄健 周浙昆 苏涛 《科学通报》 EI CAS CSCD 北大核心 2023年第12期1567-1579,共13页
新生代青藏高原生长和全球温度变化驱动东亚气候和生态系统发生了剧烈变化.本文综述了前人的相关研究成果,基于前期的数值模拟工作,进一步探讨了青藏高原地形地貌演变对东亚水循环及生态系统的影响.目前,关于青藏高原新生代以来地形地... 新生代青藏高原生长和全球温度变化驱动东亚气候和生态系统发生了剧烈变化.本文综述了前人的相关研究成果,基于前期的数值模拟工作,进一步探讨了青藏高原地形地貌演变对东亚水循环及生态系统的影响.目前,关于青藏高原新生代以来地形地貌的演化还存在争议,但近年来不同学科的证据一致认为,青藏高原生长过程具有区域差异性.最新的古气候数值模拟表明,青藏高原北部抬升显著改变了亚洲气候系统,促使东亚降水显著增加,尤其是中国南方冬季降水增加更为明显,地表径流也相应增加,对东亚水系格局产生了重要影响;土壤含水量也随之增加,冬季深层土壤含水量增加尤为显著,导致中国东部植被从干旱、半干旱转变为湿润、半湿润植被类型,造就了现今东亚植被和生物多样性格局.目前,关于青藏高原生长对东亚降水的影响,科学界已有深入认识,但是还有若干关键问题亟待解决,包括:对青藏高原地形地貌演化的进一步限定、对气候转型期高精度的古气候数值模拟,以及进一步解析新生代东亚水循环和生态系统的耦合关系.理解这些关键问题对预测未来全球气候急剧变化背景下的生态系统响应及其演变趋势具有重要的参考意义. 展开更多
关键词 青藏高原 数值模拟 水文 地表径流 土壤水分 植被
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The Paleogene to Neogene climate evolution and driving factors on the Qinghai-Tibetan Plateau 被引量:2
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作者 jiagang zhao Shufeng LI +5 位作者 Alexander FARNSWORTH Paul J.VALDES Tammo REICHGELT Linlin CHEN Zhekun ZHOU Tao SU 《Science China Earth Sciences》 SCIE EI CSCD 2022年第7期1339-1352,共14页
The growth of the Qinghai-Tibetan Plateau(QTP)during the Cenozoic drove dramatic climate and environmental change in this region.However,there has been limited comprehensive research into evolution of climate during t... The growth of the Qinghai-Tibetan Plateau(QTP)during the Cenozoic drove dramatic climate and environmental change in this region.However,there has been limited comprehensive research into evolution of climate during this interval.Here we present a quantitative reconstruction using Bioclimatic Analysis(BA)and Joint Probability Density Functions(JPDFs)based on data available for 48 fossil floras,including macrofossils and palynological fossils collected in the QTP area from the Paleogene to Neogene(66–2.58 Ma).Both methods indicate that there was an overall decline in temperature and precipitation.Paleoclimatic simulations using Hadley Centre Coupled Model version3(HadCM3)show that the most prominent climate change was very likely driven by QTP orographic evolution from the late Eocene,which was accompanied by a shift in temperature from a latitudinal distribution to a topographically controlled pattern.In addition,with the growth of the QTP,temperature and precipitation decreased gradually in the northeastern part of the plateau.Different sources of evidence,including plant fossil records,climate simulations and other proxies,indicate that the topographic evolution of the QTP and other geological events,in conjunction with global cooling,may have been the main factors driving climate change in this region.This research can provide insights into Cenozoic environmental change and ecosystem evolution. 展开更多
关键词 Qinghai-Tibetan Plateau CENOZOIC PALEOCLIMATE Plant fossil Climate modelling
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