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    中国百强科技报刊

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    Volume 45 Issue 6
    Jun.  2020
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    Article Contents
    Cui Lifang, Wang Lunche, Qu Sai, Deng Lihuan, Wang Zhaoduo, 2020. Impacts of Temperature, Precipitation and Human Activity on Vegetation NDVI in Yangtze River Basin, China. Earth Science, 45(6): 1905-1917. doi: 10.3799/dqkx.2019.171
    Citation: Cui Lifang, Wang Lunche, Qu Sai, Deng Lihuan, Wang Zhaoduo, 2020. Impacts of Temperature, Precipitation and Human Activity on Vegetation NDVI in Yangtze River Basin, China. Earth Science, 45(6): 1905-1917. doi: 10.3799/dqkx.2019.171

    Impacts of Temperature, Precipitation and Human Activity on Vegetation NDVI in Yangtze River Basin, China

    doi: 10.3799/dqkx.2019.171
    • Received Date: 2019-04-26
    • Publish Date: 2020-06-15
    • To investigate the impacts of temperature,precipitation and human activity on the vegetation normalized difference vegetation index (NDVI) variation,in this study,taking Yangtze River basin (YRB) as the study area,temperature,precipitation and vegetation NDVI variation were analyzed using linear regression (LR) analysis and Theil-Sen Median trend analysis. The impacts of temperature,precipitation and human activity on vegetation NDVI variation were analyzed using the Pearson correlation analysis and residuals analysis. The results show that the annual mean temperature significantly increased over the whole basin during 1960—2015. However,the precipitation shows little change. The annual mean NDVI shows a significant increasing trend over the whole study area during 1982—2015. The correlation coefficients between NDVI and temperature are high. However,the mean NDVI has no significant correlation with annual precipitation. The regions where the NDVI increased caused by human activity were mainly located in the northern,southeastern and southwestern YRB,while the regions where the NDVI decreased caused by human activity were mainly located in the small part of mid-western YRB and YRD. This study highlights that the mean air temperature has stronger effects on vegetation NDVI than precipitation and the effects of global warming and human activity on ecological environment at the local scale.

       

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