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Urban Stormwater Runoff: A New Class of Environmental Flow Problem

机译:城市雨水径流:环境流问题的一类新

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摘要

Environmental flow assessment frameworks have begun to consider changes to flow regimes resulting from land-use change. Urban stormwater runoff, which degrades streams through altered volume, pattern and quality of flow, presents a problem that challenges dominant approaches to stormwater and water resource management, and to environmental flow assessment. We used evidence of ecological response to different stormwater drainage systems to develop methods for input to environmental flow assessment. We identified the nature of hydrologic change resulting from conventional urban stormwater runoff, and the mechanisms by which such hydrologic change is prevented in streams where ecological condition has been protected. We also quantified the increase in total volume resulting from urban stormwater runoff, by comparing annual streamflow volumes from undeveloped catchments with the volumes that would run off impervious surfaces under the same rainfall regimes. In catchments with as little as 5–10% total imperviousness, conventional stormwater drainage, associated with poor in-stream ecological condition, reduces contributions to baseflows and increases the frequency and magnitude of storm flows, but in similarly impervious catchments in which streams retain good ecological condition, informal drainage to forested hillslopes, without a direct piped discharge to the stream, results in little such hydrologic change. In urbanized catchments, dispersed urban stormwater retention measures can potentially protect urban stream ecosystems by mimicking the hydrologic effects of informal drainage, if sufficient water is harvested and kept out of the stream, and if discharged water is treated to a suitable quality. Urban stormwater is a new class of environmental flow problem: one that requires reduction of a large excess volume of water to maintain riverine ecological integrity. It is the best type of problem, because solving it provides an opportunity to solve other problems such as the provision of water for human use.
机译:环境流量评估框架已开始考虑由土地利用变化引起的流量变化。城市雨水径流会通过改变流量,流量和水质而使河流退化,这带来了一个挑战,挑战了雨水和水资源管理以及环境流量评估的主流方法。我们使用对不同雨水排放系统的生态响应证据来开发环境流量评估的输入方法。我们确定了常规城市雨水径流导致的水文变化的性质,以及在保护了生态条件的河流中防止这种水文变化的机制。我们还通过比较未开发集水区的年流量与在相同降雨制度下会从不透水面流下的流量来量化城市雨水径流导致的总流量增加。在总防渗性低至5%至10%的流域中,常规的雨水排水与不良的流域生态状况有关,会减少对基流的贡献,并增加暴雨流的频率和幅度,但在不透水的流域中,溪流保持良好状态在生态条件下,向森林山坡的非正式排水,而没有直接管道排放到溪流的情况,导致这种水文变化很小。在城市化的集水区,分散的城市雨水保留措施可以通过模仿非正式排水的水文影响,如果收集了足够的水并将其排除在溪流之外,并且如果排放的水经过了适当质量的处理,则可以通过模仿非正式排水的水文影响来保护城市溪流的生态系统。城市雨水是一类新的环境流量问题:需要减少大量过量的水以维持河流生态完整性。这是最好的问题类型,因为解决它可以解决其他问题,例如为人类提供水。

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