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Remote Sensing Based Analysis of Recent Variations in Water Resources and Vegetation of a Semi-Arid Region

机译:基于遥感的半干旱地区水资源和植被最新变化分析

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This study is designed to demonstrate use of free remote sensing data to analyze response of water resources and grassland vegetation to a climate change induced prolonged drought in a sparsely gauged semi-arid region. Water resource changes over Hulun Lake region derived from monthly Gravity Recovery and Climate Experiment (GRACE) and Tropical Rainfall Measuring Mission (TRMM) products were analyzed. The Empirical Orthogonal Functions (EOF) analysis results from both GRACE and TRMM showed decreasing trends in water storage changes and precipitation over 2002 to 2007 and increasing trends after 2007 to 2012. Water storage and precipitation changes on the spatial and temporal scale showed a very consistent pattern. Further analysis proved that water storage changes were mainly caused by precipitation and temperature changes in this region. It is found that a large proportion of grassland vegetation recovered to its normal state after above average rainfall in the following years (2008–2012) and only a small proportion of grassland vegetation (16.5% of the study area) is degraded and failed to recover. These degraded grassland vegetation areas are categorized as ecologically vulnerable to climate change and protective strategies should be designed to prevent its further degradation.
机译:这项研究旨在证明使用免费的遥感数据分析稀疏半干旱地区水资源和草原植被对气候变化导致的长期干旱的响应。分析了每月重力恢复和气候试验(GRACE)和热带雨量测量任务(TRMM)产品得出的呼伦湖地区水资源变化。 GRACE和TRMM的经验正交函数(EOF)分析结果表明,2002年至2007年期间储水量和降水量呈下降趋势,而2007年至2012年之后呈上升趋势。水体和降水量在时空尺度上的变化非常一致。模式。进一步分析证明,该地区的储水量变化主要是由降水和温度变化引起的。结果发现,在接下来的几年(2008-2012年),降雨量超过平均水平后,草地植被恢复到正常状态,只有一小部分草地植被(占研究区域的16.5%)退化而无法恢复。 。这些退化的草地植被地区被归类为生态易受气候变化影响的地区,应设计保护策略以防止其进一步退化。

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