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Shift in potential evapotranspiration and its implications for dryness/wetness over Southwest China

机译:潜在蒸散量的变化及其对中国西南地区干湿的影响

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During 1961–2012, the regional average annual potential evapotranspiration (PET) of Southwest China (SWC) and the four subregions (named as SR1, SR2, SR3, and SR4) showed different decreases (excluding SR3); while the breakpoint analysis suggested that PETchanges (i.e., signandmagnitude)haveshifted. Basedon a group of sensitivity experiments with Penman-Monteith equation and a new separating method, the contributions of each climate factor alone (i.e., net radiation,Rn;meantemperature, Tave; windspeed,Wnd;and vapor pressure deficit, Vpd) to PET changes were calculated. Results showed that declinedWndin SR1, reduced Rn in SR2, SR4, and SWC, and increased Vpd in SR3 were responsible for the PET changes during 1961–2012. However, the determinant factor for each subregion and SWC varied in different segmented periods, which were identified using the breakpoint analysis. The impacts of PET shifts on SWC dryness/wetness (reflected by the 3 month Standardized Precipitation-Evapotranspiration index, SPEI-3) during 1961–2012 were then quantified. Briefly, SPEI-3 changes in SR3, SR4, andSWChad the determinant factor of PET in the first one or two period(s), and precipitation in the last period; while they were attributed to PET (precipitation) in SR1 (SR2) for each segmented period. It is found that PET and precipitation had comparable contributions to the variations in SWC dryness/wetness. Our findings have suggested that more attentions should be paid to the impacts of PET changes and shifts in future studies of dryness/wetness or drought.
机译:在1961-2012年期间,中国西南地区(SWC)和四个次区域(分别称为SR1,SR2,SR3和SR4)的区域年平均潜在蒸散量(PET)呈现不同的下降趋势(不包括SR3);而断点分析表明PET的变化(即符号和大小)已经发生了变化。基于一组使用Penman-Monteith方程进行的敏感性实验和一种新的分离方法,仅每种气候因素(即净辐射,Rn;平均温度,塔夫;风速,Wnd;以及蒸气压赤字,Vpd)的贡献即可被计算。结果表明,1961-2012年期间,Wndin SR1的下降,SR2,SR4和SWC的Rn降低以及SR3的Vpd升高是PET变化的原因。但是,每个子区域和SWC的决定因素在不同的细分时段中有所不同,这些细分时段是使用断点分析确定的。然后量化了1961-2012年间PET转变对SWC干/湿的影响(反映为3个月的标准降水-蒸散指数SPEI-3)。简而言之,SPEI-3在SR3,SR4和SWChad中的变化是前一个或两个时期PET的决定因素,而在最后一个时期则是降水。而在每个细分时段中,它们均归因于SR1(SR2)中的PET(沉淀)。发现PET和沉淀对SWC干/湿的变化具有可比的贡献。我们的发现表明,在未来的干燥/湿润或干旱研究中,应该更多地关注PET变化和变化的影响。

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