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Rain use efficiency changes and its effects on land surface phenology in the Songnen Plain, Northeast China

机译:东北松嫩平原雨水利用效率变化及其对地表物候的影响

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Rain-use efficiency (RUE) acts as a typical indicator of ecosystem function. Land surface phenology (LSP) assesses the vegetation activity during the growing season at the ecosystem level. The Songnen Plain (SNP) is located in semi-humid to semi-arid transition ecological fragile zone in Northeast China. RUE in growing season (May-September) was calculated using time series GIMMS NDVI3g images and precipitation data for the period of 1983-2012. The phenology metrics including the start (SOS) and end (EOS) dates of growing season for each year was extracted. Spatial trends of RUE and LSP were examined by applying a linear regression model with time. The correlation analysis was used to analyze the effects of RUE on LSP. The results showed that RUE increased slightly with an undulating trend. Spatially, the highest positive slopes indicating increased trend of RUE were observed in northern and eastern forest. The advanced in SOS was mainly distributed in northern forest areas. 12.2% of the landscape experienced highly increase trend in EOS with a rate of 0.38 days per year. The length of growing season (LOS) was prolonged in 14.2% of the total land. EOS dates in the southern salinized grassland and cropland were mainly negatively correlated with RUE. The results of the significance test show that 2.95% of the pixels were significantly and positively correlated with RUE. indicating that an increase in the RUE would delay the EOS. Increasing RUE promoted the extension of the LOS, particularly in the forest areas.
机译:雨水利用效率(RUE)是生态系统功能的典型指标。地表物候学(LSP)评估了生长期在生态系统水平上的植被活动。松嫩平原(SNP)位于中国东北地区从半湿润到半干旱的生态脆弱带。使用时间序列GIMMS NDVI3g图像和1983-2012年期间的降水量数据,计算了生长季节(5月至9月)的RUE。提取了包括每年生长期的开始(SOS)和结束(EOS)日期在内的物候指标。通过应用随时间变化的线性回归模型,研究了RUE和LSP的空间趋势。相关分析用于分析RUE对LSP的影响。结果表明,RUE略有增加,并有起伏趋势。在空间上,在北部和东部森林中观察到表明RUE趋势增加的最高正斜率。 SOS的高级版主要分布在北部森林地区。 12.2%的景观的EOS呈高度增长趋势,每年0.38天。生长季(LOS)的时间延长了总土地的14.2%。南部盐碱化草原和农田的EOS日期主要与RUE呈负相关。显着性测试的结果表明,2.95%的像素与RUE显着正相关。表示RUE的增加会延迟EOS。 RUE的增加促进了LOS的扩展,特别是在森林地区。

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