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首页> 外文期刊>Journal of Environmental Management >Can catchment-scale urban stormwater management measures benefit the stream hydraulic environment?
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Can catchment-scale urban stormwater management measures benefit the stream hydraulic environment?

机译:集水规模的城市雨水管理措施是否可以使溪流水力环境受益?

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The potential for catchment-scale stormwater control measures (SCMs) to mitigate the impact of stormwater runoff issues and excess stormwater volume is increasingly recognised. There is, however, limited understanding about their potential in reducing in-channel disturbance and improving hydraulic conditions for stream ecosystem benefits. This study investigates the benefits that SCM application in a catchment have on in-stream hydraulics. To do this, a two-dimensional hydraulic model was employed to simulate the stream hydraulic response to scenarios of SCM application applied in an urban catchment to return towards pre-development hydrologic pulses. The hydraulic response analysis considered three hydraulic metrics associated with key components of stream ecosystem functions: benthic mobilization, hydraulic diversity and retentive habitat availability. The results showed that when applied intensively, the developed SCM scenarios could effectively restore the in-stream hydraulics to close to natural levels. Compared to an unmanaged urban case (no SCMs), SCM scenarios yielded channels with reduced bed mobility potential, close to natural hydraulic diversity and improvement of retentive habitat availability. This indicates that mitigating the effect of stormwater driven hydrological change could result in significant improvements in the physical environment to better support ecosystem functioning. We therefore suggest that intensive implementation of SCMs is an important action in an urbanizing catchment to maintain the flow regime and hydraulic conditions that sustain the 'natural' stream habitat functioning. We propose that stormwater management and protection of stream ecosystem processes should incorporate hydraulic metrics to measure the effectiveness of management strategies.
机译:人们越来越认识到,采用流域规模的雨水控制措施(SCM)可以减轻雨水径流问题和过多的雨水量的影响。但是,对于它们在减少河道内扰动和改善水力条件以获取河流生态系统效益方面的潜力了解甚少。这项研究调查了SCM在流域中对流域水力系统的应用带来的好处。为此,采用二维水力模型来模拟对流域水力响应,该水力响应应用在城市流域的SCM应用场景中,从而返回到开发前的水文脉冲。水力响应分析考虑了与河流生态系统功能的关键组成部分相关的三个水力指标:底栖动员,水力多样性和保持性栖息地的可用性。结果表明,在密集应用的情况下,已开发的SCM方案可以有效地将流内水力恢复到接近自然水平。与没有管理的城市案例(无SCM)相比,SCM情景产生的河床具有降低的床层移动潜力,接近自然的水力多样性并改善了保持性栖息地的可用性。这表明减轻雨水驱动的水文变化的影响可能会导致物理环境的显着改善,从而更好地支持生态系统的功能。因此,我们建议在城市化集水区集中实施SCM是一项重要行动,以维持维持“自然”河流栖息地功能的流动状态和水力条件。我们建议,雨水管理和河流生态系统过程的保护应纳入水力指标,以衡量管理策略的有效性。

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