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Surface water-groundwater interactions in catchment scale water resources assessments-understanding and hypothesis testing with a hydrological model

机译:流域规模水资源评估中的地表水-地下水相互作用-水文模型的认识和假设检验

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摘要

Interactions between surface water and groundwater systems in fractured rock environments, covering large parts of southern Africa, are poorly understood, such that modelling the different water balance components is highly uncertain. Some of these uncertainties are highlighted and attempts are made to resolve them using hypothesis testing with an uncertain ensemble version of the widely used Pitman hydrological model that includes relevant groundwater components. Five study catchments are used to represent many of the major uncertainties in linking surface and groundwater resources, including the relative importance of deep unsaturated zone drainage, the balance between recharge and losses through riparian evapotranspiration and channel transmission losses. The study demonstrates that some uncertainties can be reduced, but this also involves making a number of assumptions about other aspects of a catchment water balance that can be conceptually supported but not completely validated with available data. The remaining uncertainties need to be resolved through improved process quantification and understanding, possibly using environmental tracers.
机译:对于覆盖南部非洲大部分地区的裂隙岩石环境中的地表水与地下水系统之间的相互作用了解甚少,因此对不同水平衡组成部分进行建模非常不确定。这些不确定性中的某些被突出显示,并尝试使用假设检验来解决这些不确定性,该假设检验是包含相关地下水成分的广泛使用的Pitman水文模型的不确定总体形式。五个研究集水区被用来代表地表水和地下水资源联系的许多主要不确定性,包括深层非饱和区排水的相对重要性,河岸蒸散量的补给与损失之间的平衡以及河道的输运损失。研究表明,可以减少一些不确定性,但这还涉及对集水区水平衡的其他方面做出一些假设,这些假设可以在概念上得到支持,但不能用可用数据进行完全验证。剩余的不确定性需要通过改进的过程量化和理解来解决,可能使用环境示踪剂。

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