Evaluation of Vegetation Responses to Climatic Factors and Global Vegetation Trends using GLASS LAI from 1982 to 2010
Autor: | Xijia Li, Ying Qu |
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Jazyk: | English<br />French |
Rok vydání: | 2018 |
Předmět: | |
Zdroj: | Canadian Journal of Remote Sensing, Vol 44, Iss 4, Pp 357-372 (2018) |
Druh dokumentu: | article |
ISSN: | 1712-7971 07038992 |
DOI: | 10.1080/07038992.2018.1526064 |
Popis: | Vegetation growth has been profoundly affected by global climate change. It is important to investigate vegetation responses to climatic factors and vegetation trends with remote sensing data. In this study, we explored the responses of global vegetation to 3 climatic factors (temperature, precipitation, and solar radiation) and global vegetation trends based on the Global Land Surface Satellite (GLASS) Leaf Area Index (LAI) dataset from 1982 to 2010. The main findings are: (i) the vegetation responses to temperature and precipitation have no apparent time-lag and the vegetation response to the solar radiation has a time-lag of 1 month in most places in the northern hemisphere; (ii) the driving factor of the growth of vegetation was air temperature, followed by precipitation and solar radiation; (iii) the closest relationships between vegetation and climatic factors were observed in mixed forest, deciduous needleleaf forest, and shrublands at northern mid- and high-latitude; (iv) a map of global vegetation trends from 1982 to 2010 was derived, and showed that the proportion of vegetated pixels with significant increasing and decreasing trends was 34.73% and 6.59% (p |
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