雨水控制措施在保护河道稳定性方面的效果

IF 3.2 3区 地球科学 Q1 Environmental Science Hydrological Processes Pub Date : 2024-06-15 DOI:10.1002/hyp.15178
Sami Towsif Khan, Theresa Wynn-Thompson, David Sample, Mohammad Al-Smadi, Mina Shahed Behrouz, Andrew J. Miller
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引用次数: 0

摘要

尽管对不同类型的雨水控制措施(SCMs)的水文影响进行了大量研究,但很少有研究将城市化、SCMs 的广泛实施与上游溪流的河道稳定性联系起来。本研究评估了美国马里兰州的统一雨水规模标准(USSC)法规(该法规要求使用末端管道和分布式小规模 SCM)是否能保护河道稳定性。为了实现这一目标,我们开发了一种耦合分层建模方法,利用雨水管理模型(SWMM)和水文工程中心河流分析系统 6.3(HEC-RAS)来预测一阶砾石河床、堑潭河道中的溪流和泥沙输运动态变化。HEC-RAS 模拟结果还显示,由于法规要求使用 24 小时持续时间的设计暴雨和目标暴雨滞留时间,而不是河床材料沉积物迁移限制,因此可能会出现河道退化和加高(高达 1.2 米)的情况。总之,这项研究为深入了解严重城市化流域中的 SCM 实践、流态和沉积物迁移动态之间的复杂互动关系提供了宝贵的见解。建议使用至少有 10 年连续降雨数据的连续模拟模型来设计 SCM。此外,为了保护河道的稳定性,SCM 的设计目标应侧重于在各种水流中保持开发前的沉积物输运机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Effectiveness of stormwater control measures in protecting stream channel stability

While research on the hydrologic impact of different types of stormwater control measures (SCMs) is extensive, little research exists linking urbanization, widespread implementation of SCMs and channel stability in headwater streams. This study evaluated whether the unified stormwater sizing criteria (USSC) regulations in the state of Maryland, USA, which require the use of both end-of-pipe and distributed, small-scale SCMs, protect channel stability. To achieve this goal, a coupled hierarchical modelling approach utilizing the Storm Water Management Model (SWMM) and the Hydrologic Engineering Center River Analysis System 6.3 (HEC-RAS) was developed to predict changes in streamflow and sediment transport dynamics in a first-order gravel-bed, riffle-pool channel. Storm event discretization revealed that 88% of observed storm events during the 16 years (2004–2020) had durations less than 18 h and that the greatest peak flows resulted from storm events with durations less than 24 h. HEC-RAS simulation results also showed that both channel degradation and aggradation, as high as 1.2 m, will likely occur due to regulations which require the use of 24 h duration design storms with a target stormwater detention time rather than bed material sediment transport limits. Overall, this study provides valuable insights into the complex interactions between SCM practises, flow regimes and sediment transport dynamics in heavily urbanized watersheds. It is recommended that SCMs be designed using a continuous simulation model with at least 10 years of continuous rainfall data. Furthermore, to protect channel stability, the SCM design goal should focus on maintaining pre-development sediment transport regimes across a range of flows.

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来源期刊
Hydrological Processes
Hydrological Processes 环境科学-水资源
CiteScore
6.00
自引率
12.50%
发文量
313
审稿时长
2-4 weeks
期刊介绍: Hydrological Processes is an international journal that publishes original scientific papers advancing understanding of the mechanisms underlying the movement and storage of water in the environment, and the interaction of water with geological, biogeochemical, atmospheric and ecological systems. Not all papers related to water resources are appropriate for submission to this journal; rather we seek papers that clearly articulate the role(s) of hydrological processes.
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