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Hydrological Functioning of an Evolving Urban Stormwater Network

机译:不断发展的城市雨水网络的水文功能

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摘要

As complex systems, urban stormwater networks (USNs) may reveal emergent features (e.g., scaling) and sudden changes in behavior, which can lead to unanticipated impacts. We explored this through the USN properties of connectivity, heterogeneity, and scaling, which were quantified using outputs from a hydrological model and network dispersion mechanisms. The network properties were determined retrospectively in space and time by reconstructing the contemporary history of urban development and stormwater infrastructure in an arid, urban catchment in the City of Scottsdale, Arizona, USA. We found that the relative importance to USN functioning of both network structure (geomorphology) and dynamics (spatial celerity pattern) changed with the spatial scale, with network geomorphology being more dominant at larger spatial scales. The importance of network geomorphology suggested that the structure of the USN itself could potentially serve as a stormwater control measure, for example, by enhancing flow dispersion. The temporal evolution of the USN revealed a sudden change in the hydrological functioning of the network, which seemed to be a consequence of the combined effects of patchy urban development and changes in network connectivity. The interactions between the urban spatial pattern, stormwater infrastructure, and surface runoff may result in threshold-like behavior. A spatial multiscale approach to stormwater management may be beneficial to ensure that hydrological benefits at one scale do not cause unintended consequences at another. Overall, the retrospective modeling and network analysis approach used in this study may be useful for understanding emergent urban stormwater impacts.
机译:作为复杂的系统,城市雨水网络(USN)可能会显示新出现的特征(例如缩放)和行为的突然变化,这可能会导致意料之外的影响。我们通过连通性,异质性和规模化的USN属性对此进行了探索,这些属性使用水文模型和网络分散机制的输出进行了量化。通过在美国亚利桑那州斯科茨代尔市的一个干旱城市集水区重建城市发展和雨水基础设施的当代历史,来回顾性地确定网络的时空特征。我们发现,网络结构(地理形态)和动力学(空间速度模式)对USN功能的相对重要性随空间规模而变化,而网络地理形态在较大的空间尺度上更占优势。网络地貌学的重要性表明,USN本身的结构可以潜在地用作雨水控制措施,例如,通过增强流量分散性。 USN的时间演变揭示了该网络的水文功能突然改变,这似乎是城市斑驳发展与网络连通性变化共同作用的结果。城市空间格局,雨水基础设施和地表径流之间的相互作用可能导致类似阈值的行为。空间多尺度雨水管理方法可能有益于确保一种规模的水文效益不会对另一种规模造成意想不到的后果。总体而言,本研究中使用的回顾性建模和网络分析方法可能有助于理解新兴的城市雨水影响。

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  • 来源
    《Water resources research》 |2019年第8期|6517-6533|共17页
  • 作者单位

    Natl Socioenvironm Synth Ctr Annapolis MD 21401 USA;

    Idaho State Univ Dept Biol Sci Pocatello ID 83209 USA;

    Pontificia Univ Catolica Chile Dept Ingn Hidraul & Ambiental Santiago Chile|Pontificia Univ Catolica Chile Ctr Interdisciplinario Cambio Global Santiago Chile|Ctr Desarrollo Urbano Sustentable Santiago Chile|Ctr Invest Gest Integrada Desastres Nat Santiago Chile;

    Penn State Univ Dept Civil & Environm Engn University Pk PA 16802 USA;

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