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Functional approach to exploring climatic and landscape controls of runoff generation: 1. Behavioral constraints on runoff volume

机译:探索径流生成气候与景观控制的功能方法:1。径流卷的行为约束

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摘要

Inspired by the Dunne diagram, the climatic and landscape controls on the partitioning of annual runoff into its various components (Hortonian and Dunne overland flow and subsurface stormflow) are assessed quantitatively, from a purely theoretical perspective. A simple distributed hydrologic model has been built sufficient to simulate the effects of different combinations of climate, soil, and topography on the runoff generation processes. The model is driven by a sequence of simple hypothetical precipitation events, for a large combination of climate and landscape properties, and hydrologic responses at the catchment scale are obtained through aggregation of grid-scale responses. It is found, first, that the water balance responses, including relative contributions of different runoff generation mechanisms, could be related to a small set of dimensionless similarity parameters. These capture the competition between the wetting, drying, storage, and drainage functions underlying the catchment responses, and in this way, provide a quantitative approximation of the conceptual Dunne diagram. Second, only a subset of all hypothetical catchment/climate combinations is found to be "behavioral," in terms of falling sufficiently close to the Budyko curve, describing mean annual runoff as a function of climate aridity. Furthermore, these behavioral combinations are mostly consistent with the qualitative picture presented in the Dunne diagram, indicating clearly the commonality between the Budyko curve and the Dunne diagram. These analyses also suggest clear interrelationships amongst the "behavioral" climate, soil, and topography parameter combinations, implying these catchment properties may be constrained to be codependent in order to satisfy the Budyko curve.
机译:由Dunne图的启发,从纯粹的理论的角度来看,对每年径流分区的气候和景观控制分配到其各种组件(Hortonian和Dunne陆上流动和地下风暴流出)。已经建立了一种简单的分布式水文模型,以模拟各种气候,土壤和地形的不同组合对径流生成过程的影响。该模型由一系列简单的假设沉淀事件驱动,对于气候和景观特性的大组合,通过聚集网格响应的聚集来获得集水区的水文响应。首先,可以找到水平衡响应,包括不同径流生成机制的相对贡献,可以与一小一小集的无量纲相似性参数有关。这些捕获在集水区响应的润湿,干燥,储存和排水功能之间的竞争,以这种方式,提供了概念盲肠图的定量近似。其次,发现所有假设的集水区/气候组合的子集是“行为”,就足够靠近Budyko曲线而下降,描述了作为气候干燥的函数的平均年径流。此外,这些行为组合主要与Dunne图中呈现的定性图片一致,表明Budyko曲线和DUSNE图之间的共性。这些分析还建议在“行为”气候,土壤和地形参数组合中明确相互关系,这意味着这些集水区可能被限制为可靠性,以便满足Budyko曲线。

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  • 来源
    《Water resources research》 |2014年第12期|9300-9322|共23页
  • 作者单位

    Pacific NW Natl Lab Hydrol Tech Grp Richland WA 99352 USA;

    Univ Illinois Dept Civil & Environm Engn Hydrosyst Lab Urbana IL USA|Univ Illinois Dept Geog & Geog Informat Sci Urbana IL USA;

    Tsinghua Univ Dept Hydraul Engn State Key Lab Hydrosci & Engn Beijing 100084 Peoples R China;

    Johns Hopkins Univ Dept Geog & Environm Engn Baltimore MD 21218 USA;

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