...
首页> 外文期刊>Journal of Water Resources Planning and Management >Simulation-Optimization Framework to Support Sustainable Watershed Development by Mimicking the Predevelopment Flow Regime
【24h】

Simulation-Optimization Framework to Support Sustainable Watershed Development by Mimicking the Predevelopment Flow Regime

机译:通过模拟开发前流程制度来支持流域可持续发展的仿真优化框架

获取原文
获取原文并翻译 | 示例
           

摘要

The modification of land and water resources for human use alters the natural hydrologic flow regime of a downstream receiving body of water. The natural flow regime is essential for sustaining biotic structure and equilibrium within the ecosystem. Best management practices mitigate the increased storm water runoff due to increased imperviousness and are typically designed and located within a watershed to match peak and minimum flows for a small set of targeted design storms. Ecosystems are, however, affected by all the characteristics of a long-term flow regime, including the magnitude, duration, frequency, and timing of flows. A more environmentally sustainable approach for watershed development is presented based on the minimization of differences in the characteristics of the flow regime between predevelopment and postdevelopment conditions. The indicator of hydrologic alteration (IHA) is a set of 33 hydrologic indices that characterize a flow regime and, coupled with the range of variability approach (RVA), can be used to evaluate a development strategy for its alteration of the long-term hydrologic flow regime. This paper presents a methodology to identify watershed management strategies that will have a minimal impact on the flow regime and downstream ecosystems. This methodology utilizes a metric that evaluates development strategies based on an IHA/RVA analysis implemented within a simulation-optimization framework. Continuous simulation of urban runoff for different land use strategies is enabled through the use of the storm water management model, and the resulting long-term hydrograph is analyzed using IHA/RVA. Development is allocated within subcatchments to maintain a predefined minimum level of total development while minimizing the hydrologic alteration. A hybrid optimization approach based on genetic algorithm and Nelder-Meade approaches is used to identify optimal land use allocation. Further analysis is conducted to identify alternative development patterns that allocate impervious development maximally differently among subcatchments while achieving similarly low alteration in the hydrologic flow regime.
机译:供人类使用的土地和水资源的改良改变了下游接受水体的自然水文流动状况。自然流动状态对于维持生态系统内的生物结构和平衡至关重要。最佳管理方法可缓解由于不透水性增加而增加的雨水径流,通常将其设计和定位在分水岭内,以匹配少量目标设计暴雨的峰值和最小流量。但是,生态系统会受到长期流量状态的所有特征的影响,包括流量的大小,持续时间,频率和时间安排。在最小化开发前和开发后条件之间的流态特征差异的基础上,提出了一种更具环境可持续性的流域开发方法。水文变化指标(IHA)是一组33个水文指标,这些指标描述了水流状况,并与变异性方法(RVA)范围相结合,可用于评估长期水文变化的发展策略流态。本文提出了一种方法来确定流域管理策略,这些策略将对流域和下游生态系统产生最小的影响。这种方法利用一种指标,该指标基于在模拟优化框架内实施的IHA / RVA分析来评估开发策略。通过使用雨水管理模型,可以对不同土地利用策略的城市径流进行连续模拟,并使用IHA / RVA对生成的长期水文图进行分析。在子汇水面积内分配开发量,以在最大程度降低水文变化的同时,维持总体开发的预定最低水平。基于遗传算法和Nelder-Meade方法的混合优化方法被用来确定最优的土地利用分配。进行了进一步的分析,以确定可替代的开发模式,这些模式在子汇水面积之间最大程度地分配了不透水的开发,同时在水文流量方面实现了相似的低变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号