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Global land moisture trends: drier in dry and wetter in wet over land

机译:全球土地湿度趋势:陆地上的干燥干旱和潮湿

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摘要

The “dry gets drier, wet gets wetter” (DGDWGW) paradigm is widely accepted in global moisture change. However, Greve et al. have declared that this paradigm has been overestimated. This controversy leaves a large gap in the understanding of the evolution of water-related processes. Here, we examine the global moisture trends using satellite soil moisture for the past 35 years (1979–2013). Our results support those of Greve et al., although there are quantitative differences. Generally, approximately 30% of global land has experienced robust moisture trends (22.16% have become drier, and 7.14% have become wetter). Only 15.12% of the land areas have followed the DGDWGW paradigm, whereas 7.77% have experienced the opposite trend. A new finding is that there is a significant “drier in dry, wetter in wet” (DIDWIW) trend paradigm; 52.69% of the drying trend occurred in arid regions, and 48.34% of the wetter trend occurred in the humid regions. Overall, 51.63% of the trends followed the DIDWIW paradigm, and 26.93% followed the opposite trend. We also identified the DGDWGW and DIDWIW paradigms in low precipitation-induced arid regions in which the dry soil led to an increasing sensible heat flux and temperature and subsequently potential evapotranspiration.
机译:“干变干,湿变湿”(DGDWGW)范式在全球湿度变化中被广泛接受。但是,Greve等人 宣称这种范例被高估了。这场争论在与水有关的过程演变的理解上留下了很大的空白。在这里,我们使用过去35年(1979-2013年)的卫星土壤湿度研究了全球湿度趋势。尽管存在定量差异,但我们的结果支持Greve等人的结果。通常,全球约30%的土地经历了强劲的水分趋势(22.16%变得更干燥,而7.14%变得更湿)。只有15.12%的土地面积遵循了DGDWGW范式,而7.77%则经历了相反的趋势。一个新发现是,存在着显着的“干干湿润”(DIDWIW)趋势范式。干燥趋势的52.69%发生在干旱地区,潮湿趋势的48.34%发生在潮湿地区。总体而言,51.63%的趋势遵循DIDWIW范式,26.93%遵循相反的趋势。我们还确定了低降水引起的干旱地区的DGDWGW和DIDWIW范式,在该地区干旱的土壤导致显着的热通量和温度升高,并随之产生潜在的蒸散作用。

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