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首页> 外文期刊>Water resources research >Urban Residential Surface and Subsurface Hydrology: Synergistic Effects of Low-Impact Features at the Parcel Scale
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Urban Residential Surface and Subsurface Hydrology: Synergistic Effects of Low-Impact Features at the Parcel Scale

机译:城市居民地表和地下水文学:宗地规模低影响特征的协同效应

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摘要

Accurately predicting the hydrologic effects of urbanization requires an understanding of how hydrologic processes are affected by low-impact development practices. In this study, we explored how growing season surface runoff, deep drainage, and evapotranspiration on a residential parcel are affected by several low-impact interventions, including three "impervious-centric" interventions (disconnecting downspouts, disconnecting sidewalks, and adding a transverse slope to the driveway and front walk), two "pervious-centric" interventions (decompacting soil and adding microtopography), and all possible "holistic" combinations. Results were compared to both a highly and moderately compacted baseline parcel under an average and a dry weather scenario for a temperate climate. We find that under reasonable assumptions for highly compacted soil, pervious areas are a major source of runoff and disconnecting impervious surfaces may be relatively less effective without improving soil conditions. Under both highly and moderately compacted soil conditions, combining efforts to decompact soil with impervious disconnection has a synergistic effect on reducing surface runoff and increasing deep drainage and evapotranspiration. All combinations of interventions enhance infiltration, but the partitioning of additional root zone water between deep drainage and evapotranspiration depends on the weather scenario. Importantly, when all low-impact interventions are applied together, growing season deep drainage is higher than that from a vacant lot with no impervious surfaces. We infer that ecohydrologic interfaces between impervious and pervious areas are strong controls on urban hydrologic fluxes and that high-resolution, process-based models can be used to account for these interfaces and thereby improve predictions of the hydrologic effects of low-impact interventions.
机译:准确预测城市化的水文影响需要了解水文过程如何受到低影响的开发实践的影响。在这项研究中,我们探讨了住宅用地上生长季节的地表径流,深层排水和蒸散如何受到几种低影响的干预措施的影响,包括三种“防渗透中心”干预措施(断开水落管连接,断开人行道并添加一条车道和前行人行道的横向坡度),两个“以上心为中心”的干预措施(压实土壤并添加微地形)以及所有可能的“整体”组合。将结果与在温带气候的平均和干燥天气情况下的高度和中等压实基线包裹进行比较。我们发现,在合理假设的情况下,对于高度压实的土壤,透水区域是径流的主要来源,如果不改善土壤条件,断开不透水表面的效果可能相对较低。在高度和中等压实的土壤条件下,将土壤压实与不渗漏的努力相结合,对减少地表径流,增加深层排水和蒸散作用具有协同作用。所有干预措施的组合均会增强渗透作用,但在深层排水和蒸散之间分配额外的根区水取决于天气情况。重要的是,当所有低影响的干预措施一起使用时,生长季的深层排水要高于没有地表不透水的空地。我们推断,不透水区和透水区之间的生态水文界面是对城市水文通量的有力控制,并且可以使用基于过程的高分辨率模型来解释这些界面,从而改善对低影响干预措施的水文影响的预测。

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  • 来源
    《Water resources research》 |2018年第10期|8216-8233|共18页
  • 作者

    Voter C. B.; Loheide S. P. II;

  • 作者单位

    Univ Wisconsin, Dept Civil & Environm Engn, Madison, WI 53706 USA;

    Univ Wisconsin, Dept Civil & Environm Engn, Madison, WI 53706 USA;

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  • 正文语种 eng
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