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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Detecting significant decreasing trends of land surface soil moisture in eastern China during the past three decades (1979–2010)
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Detecting significant decreasing trends of land surface soil moisture in eastern China during the past three decades (1979–2010)

机译:在过去的三十年(1979-2010年)中发现了中国东部土地表层土壤水分的显着下降趋势

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摘要

Understanding the historical trends and driving mechanism of China’s soil moisture change is an important step in combating climate change. Using the time series satellite-derived Essential Climate Variable Soil Moisture (ECV_SM) product, we detected a significant decrease trend in land surface soil moisture in eastern China over a 32 year period (1979–2010). Theoretical sensitivity analysis suggested that soil moisture is regulated collectively by precipitation (P), potential evapotranspiration (PET), land surface conditions such as land cover/use changes, landscape features, irrigation and urban expansion, (m), and the water balance between input and output water supplies O (the input water supplies minus the output). The change in spatial pattern and temporal trend of P/PET is highly consistent with the corresponding change in soil moisture. The magnitude of soil moisture variation is also well correlated with that of P/PET (R~2=0.43; p<0.001). Therefore, P/PET is believed to be the dominant factor in determining the temporal trends of soil moisture change. Among the 29 drainage basins with significant decreasing trend of soil moisture change, the areas of forest cover increased by 36.08% and the average topographic slope was twice steeper than that of other regions. Therefore, besides the climate factor (P/PET variable), land surface conditions (such as land cover changes and topographic) also played important roles in regulating the trend of regional soil moisture change.
机译:了解中国土壤水分变化的历史趋势和驱动机制是应对气候变化的重要一步。使用时间序列卫星得出的基本气候可变土壤水分(ECV_SM)产品,我们发现了32年间(1979-2010年)中国东部土地表层土壤水分的显着下降趋势。理论敏感性分析表明,土壤湿度受降水量(P),潜在蒸散量(PET),土地表层条件(如土地覆盖/用途变化,景观特征,灌溉和城市扩张)(m)以及土壤之间的水平衡的共同调节输入和输出供水O(输入供水减去输出)。 P / PET的空间格局和时间趋势的变化与土壤水分的相应变化高度一致。土壤水分变化的幅度也与P / PET的变化密切相关(R〜2 = 0.43; p <0.001)。因此,P / PET被认为是决定土壤水分变化的时间趋势的主要因素。在29个土壤水分变化趋势显着下降的流域中,森林覆盖面积增加了36.08%,平均地形坡度是其他地区的两倍。因此,除了气候因素(P / PET变量)外,地表条件(例如土地覆盖变化和地形)在调节区域土壤水分变化趋势中也起着重要作用。

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