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Regional Patterns of Baseflow Variability in Mexican Subwatersheds

机译:墨西哥小流域底流变异性的区域模式

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One of the challenges faced by subwatershed hydrology is the discovery of patterns associated with climate and landscape variability with the available data. This study has three objectives: (1) to evaluate the annual recession curves; (2) to relate the recession parameter (RP) with physiographic characteristics of 21 Mexican subwatersheds in different climate regions; and (3) to formulate a Baseflow (BF) model based on a top-down approach. The RP was calibrated utilizing the largest magnitude curves. The RP was related to topographical, climate and soil variables. A non-linear model was employed to separate the baseflow which considers RP as a recharge rate. Our results show that RP increases with longitude and decreases with latitude. RP displayed a sustained non-linear behavior determined by precipitation rate and evapotranspiration replace the P/E parts with (rac{P}{E}) over years and subwatersheds. The model was fit to a parameter concurrent with invariance and space-time symmetry conditions. The dispersion of our model was associated with the product of replace the P/E parts with (rac{P}{E}) by the aquifer’s transmissivity. We put forward a generalized baseflow model, which made the discrimination of baseflow from direct flow in subwatersheds possible. The proposed model involves the recharge-storage-discharge relation and could be implemented in basins where there are no suitable ground-based data.
机译:流域水文学面临的挑战之一是利用现有数据发现与气候和景观多变性相关的模式。这项研究具有三个目标:(1)评估年度衰退曲线; (2)将衰退参数(RP)与不同气候区域的21个墨西哥小流域的生理特征联系起来; (3)基于自上而下的方法来建立Baseflow(BF)模型。利用最大幅度曲线对RP进行校准。 RP与地形,气候和土壤变量有关。使用非线性模型来分离基流,该基流将RP视为补给速率。我们的结果表明RP随经度增加而随纬度减小。 RP表现出持续的非线性行为,该非线性行为是由降水率决定的,并且蒸发蒸腾作用在多年和子流域中用( frac {P} {E} )替换了P / E部分。该模型适合于具有不变性和时空对称条件的参数。我们模型的离散性与含水层的透射率用( frac {P} {E} )替换P / E零件的结果有关。我们提出了一个广义的基流模型,该模型使得区分亚流域中的基流和直接流成为可能。所提出的模型涉及补给-储-放关系,可以在没有合适的地面数据的盆地中实施。

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