Effect of climate change on vegetation phenology of different land-cover types on the Tibetan Plateau

高原(数学) 气候变化 物候学 草原 植被(病理学) 自然地理学 降水 环境科学 归一化差异植被指数 灌木 常绿 干旱 生长季节 土地覆盖 植被类型 气候学 地理 生态学 土地利用 地质学 气象学 数学分析 病理 生物 考古 医学 数学
作者
Min Cheng,Jiaxin Jin,Jinmeng Zhang,Hong Jiang,Ruizheng Wang
出处
期刊:International Journal of Remote Sensing [Taylor & Francis]
卷期号:39 (2): 470-487 被引量:40
标识
DOI:10.1080/01431161.2017.1387308
摘要

Research in vegetation phenology change has been one heated topic of current ecological and climate change study. The Tibetan Plateau, as the highest plateau of the earth, is more vulnerable and sensitive to climate change than many other regions. In this region, shifts in vegetation phenology have been intensively studied during recent decades, primarily based on satellite-retrieved data. In this study, we explored the spatiotemporal changes of vegetation phenology for different land-cover types in the Tibetan Plateau and characterized their relationship with temperature and precipitation by using long-term time-series datasets of normalized difference vegetation index (NDVI) from 1982 to 2014. Diverse phenological changes were observed for different land-cover types, with an advancing start of growing season (SOS), delaying end of growing season (EOS) and increasing length of growing season (LOS) in the eastern Tibetan Plateau where meadow was the dominant vegetation type, but with the opposite changes in the steppe and sparse herbaceous or sparse shrub regions which are mostly located in the northwestern and western edges of the Tibetan Plateau. Correlation analysis indicated that sufficient preseason precipitation may delay the SOS of evergreen forests in the southeastern Plateau and advance the SOS of steppe and sparse herbaceous or sparse shrub in relatively arid areas, while the advance of SOS in meadow areas could be related to higher preseason temperature. For EOS, because it is less sensitive to climate change than SOS, the response of EOS for different land-cover types to precipitation and temperature were more complicated across the Tibetan Plateau.
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