Hua Ting1; Wang Xunming2
Source Publicationadvancesinatmosphericsciences
AbstractThe ecosystem of the Tibetan Plateau is highly susceptible to climate change.Currently,there is little discussion on the temporal changes in the link between climatic factors and vegetation dynamics in this region under the changing climate.By employing Normalized Di erence Vegetation Index data,the Climatic Research Unit temperature and precipitation data,and the in-situ meteorological observations,we report the temporal and spatial variations in the relationships between the vegetation dynamics and climatic factors on the Plateau over the past three decades.The results show that from the early 1980s to the mid-1990s,vegetation dynamics in the central and southeastern part of the Plateau appears to show a closer relationship with precipitation prior to the growing season than that of temperature.From the mid-1990s,the temperature rise seems to be the key climatic factor correlating vegetation growth in this region.The e ects of increasing temperature on vegetation are spatially variable across the Plateau:it has negative impacts on vegetation activity in the southwestern and northeastern part of the Plateau,and positive impacts in the central and southeastern Plateau.In the context of global warming,the changing climate condition(increasing precipitation and significant rising temperature)might be the potential contributor to the shift in the climatic controls on vegetation dynamics in the central and southeastern Plateau.
Document Type期刊论文
Recommended Citation
GB/T 7714
Hua Ting,Wang Xunming. temporalandspatialvariationsintheclimatecontrolsofvegetationdynamicsonthetibetanplateauduring19822011[J]. advancesinatmosphericsciences,2018,035(011):1337.
APA Hua Ting,&Wang Xunming.(2018).temporalandspatialvariationsintheclimatecontrolsofvegetationdynamicsonthetibetanplateauduring19822011.advancesinatmosphericsciences,035(011),1337.
MLA Hua Ting,et al."temporalandspatialvariationsintheclimatecontrolsofvegetationdynamicsonthetibetanplateauduring19822011".advancesinatmosphericsciences 035.011(2018):1337.
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