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物种和植被资源信息系统的建设及展望
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作者 高琼 关烽 +7 位作者 傅德志 纪力强 马俊才 徐克学 杨奠安 李奕 张新时 董鸣 《资源科学》 CSSCI CSCD 北大核心 2001年第1期40-45,共6页
着重阐述了生物物种和植被资源信息系统的基本组成和基础数据库 ,并简要介绍了生境评价系统的研究成果和植被资源 -气候环境的空间模拟结果。
关键词 物种资源 植被资源 数据库 气候-植被模拟 生境评价:信息系统
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Comparison of the Influence of Interannual Vegetation Variability between Offline and Online Simulations 被引量:1
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作者 ZHU Jia-Wen ZENG Xiao-Dong 《Atmospheric and Oceanic Science Letters》 CSCD 2014年第5期453-457,共5页
This study investigates the influence of interannual vegetation variability. Two sets of offline and online simulations were performed using the Community Earth System Model. The interannual Global LAnd Surface Satell... This study investigates the influence of interannual vegetation variability. Two sets of offline and online simulations were performed using the Community Earth System Model. The interannual Global LAnd Surface Satellite(GLASS) leaf area index(LAI) dataset from 1985 to 2000 and its associated climatological LAI were used to replace the default climatological LAI data in version 4 of the Community Land Model(CLM4). The results showed that on a global scale, canopy transpiration and evaporation, as well as total evapotranspiration in offline simulations were significantly positively correlated with LAI, whereas ground evaporation and ground temperature showed significant negative correlation with LAI. However, the correlations in online simulations were reduced markedly because of interactive feedbacks between albedo, changed climatic factors and atmospheric variability. In the offline simulations, the fluctuations of differences in interannual variability of evapotranspiration and ground temperature focused on vegetation growing regions and the magnitudes were smaller. Those in online simulations spread over more regions and the magnitudes were larger. These results highlight the influence of interannual vegetation variability, particularly in online simulations, an effect that deserves consideration and attention when investigating the uncertainty of climate change. 展开更多
关键词 interannual vegetation variability CLIMATECHANGE evapotranspiration ALBEDO ground temperature
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