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Shift of annual water balance in the Budyko space for catchments with groundwater-dependent evapotranspiration

机译:依赖地下水蒸散的集水区Budyko空间中年度水平衡的变化

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The Budyko framework represents the general relationship between the evapotranspiration ratio (iF/i) and the aridity index (iφ/i) for the mean annual steady-state water balance at the catchment scale. It is interesting to investigate whether this standard iF/i???iφ/i space can also be applied to capture the shift of annual water balance in catchments with varying dryness. Previous studies have made significant progress in incorporating the storage effect into the Budyko framework for the non-steady conditions, whereas the role of groundwater-dependent evapotranspiration was not investigated. This study investigates how groundwater-dependent evapotranspiration causes the shift of the annual water balance in the standard Budyko space. A widely used monthly hydrological model, the ABCD model, is modified to incorporate groundwater-dependent evapotranspiration into the zone with a shallow water table and delayed groundwater recharge into the zone with a deep water table. This model is applied in six catchments in the Erdos Plateau, China, to estimate the actual annual evapotranspiration. Results show that the variations in the annual iF/i?value with the aridity index do not satisfy the standard Budyko formulas. The shift of the annual water balance in the standard Budyko space is a combination of the Budyko-type response in the deep groundwater zone and the quasi-energy limited condition in the shallow groundwater zone. Excess evapotranspiration (iF/i?&?1) could occur in dry years, which is contributed by the significant supply of groundwater for evapotranspiration. Use of groundwater for irrigation can increase the frequency of the iF/i?&?1 cases.
机译:Budyko框架表示流域尺度上年均稳态水平衡的蒸散率( F )与干旱指数(φ)之间的一般关系。有趣的是,研究此标准 F ??? φ空间是否也可以用于捕获干燥程度不同的流域的年度水平衡变化。先前的研究在将非稳态条件下的存储效果纳入Budyko框架方面取得了重大进展,但未研究地下水依赖性蒸发蒸腾的作用。这项研究调查了依赖地下水的蒸散量如何导致标准Budyko空间中年度水平衡的变化。修改了一个广泛使用的月度水文模型,即ABCD模型,将地下水依赖的蒸散量纳入浅水区,而地下水补给延迟到深水区。该模型被应用于中国鄂尔多斯高原的六个流域,以估算实际的年蒸散量。结果表明,年度 F ?值随干旱指数的变化不满足标准的Budyko公式。标准Budyko空间中年水平衡的变化是深层地下水区的Budyko型响应与浅层地下水区的准能量受限条件的结合。在干旱年份可能会发生过量的蒸散量( F →> 1),这是由于大量的用于蒸散量的地下水造成的。使用地下水进行灌溉可以增加 F β≥1例的发生率。

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