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Surface Evaporation in Arid Regions: Insights From Lysimeter Decadal Record and Global Application of a Surface Evaporation Capacitor (SEC) Model

机译:干旱地区表面蒸发:Lysimeter Decadal记录的见解和表面蒸发电容器的全局应用(SEC)模型

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摘要

Surface evaporation in arid regions determines the fraction of rainfall that remains to support vegetation and recharge. The surface evaporation capacitor approach was used to estimate rainfall partitioning to surface evaporation and leakage into deeper layers. The surface evaporation capacitor estimates a soil-specific surface evaporation depth and critical storage capacitance that defines rainfall events that exceed local capacitance and result in leakage into deeper layers protected from surface evaporation. A decade-long record of hydrologic observations in deep and barren lysimeters near Las Vegas revealed the dominance of a few large rainfall events in generating leakage and increasing interannual soil water storage. The surface evaporation capacitor was used to estimate mean annual surface evaporation and leakage protected from surface evaporation in all arid regions globally. About 13% of arid region rainfall contributes to soil water storage (in the absence of vegetation), similar to 11% found in the lysimeter study.
机译:干旱地区的表面蒸发决定了降雨的一小部分,仍有用于支持植被和充电。表面蒸发电容器方法用于估计降雨分区以将表面蒸发和泄漏到更深层。表面蒸发电容器估计土壤特异性表面蒸发深度和临界存储电容,其定义了超过局部电容的降雨事件,并导致泄漏进入从表面蒸发保护的更深层面。拉斯维加斯附近的深度和贫瘠的稳定性仪的水文观测的十年长度记录揭示了一些大型降雨事件的主导地位,在产生泄漏和增加际土壤蓄水中的延续事件。表面蒸发电容器用于估计在全球所有干旱地区的表面蒸发中保护的平均年表面蒸发和泄漏。大约13%的干旱地区降雨有助于土壤储水(在没有植被的情况下),类似于1槲冠位研究中发现的11%。

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