Key Laboratory of Urban Stormwater System and Water Environment, Ministry of Education, Beijing University of Civil Engineering and Architecture, No. 1 Zhanlanguan Road, Beijing 100044, China E-mail:
Key Laboratory of Urban Stormwater System and Water Environment, Ministry of Education, Beijing University of Civil Engineering and Architecture, No. 1 Zhanlanguan Road, Beijing 100044, China.
Water Sci Technol. 2024 Jan;89(2):434-453. doi: 10.2166/wst.2023.411.
The integrated green-gray-blue (IGGB) system is considered to be a new way of stormwater management, and a comprehensive evaluation of the green-gray-blue infrastructure layout mode under different return periods is the key to the implementation decision-making of stormwater management. In this study, a blue-green synergism evaluation model is established to optimize the layout of blue-green infrastructure. An evaluation framework combining the evaluation indicator system and the hydrology model is established. Stormwater storage, peak flow reduction, and life cycle cost are selected as evaluation indicators. On this basis, seven optimal scenarios, including green, blue, gray, green-blue, green-gray, blue-gray, and green-gray-blue, are established. The Technique for Order Preference by Similarity to Ideal Solution (TOPSIS) method is used to analyze these seven scenarios under different return periods. The results indicate that (1) when the drainage infrastructures are arranged in combination, the peak flow reduction is significantly improved compared to that of a single drainage. (2) TOPSIS results show that green-gray and blue-gray perform better when the cost weight is 0-0.35, and green-gray-blue performs best when the cost weight is 0.35-1. (3) The integrated green-gray-blue system has obvious synergistic effects. This study can provide support for planning department workers for the urban stormwater management strategy.
综合绿色-灰色-蓝色(IGGB)系统被认为是一种新的雨水管理方式,对不同重现期下的绿色-灰色-蓝色基础设施布局模式进行综合评价是雨水管理实施决策的关键。本研究建立了一个蓝绿协同评价模型,以优化蓝绿基础设施的布局。建立了一个结合评价指标体系和水文模型的评价框架。选择雨水存储、峰值流量减少和生命周期成本作为评价指标。在此基础上,建立了包括绿色、蓝色、灰色、绿蓝、绿灰、蓝灰和绿灰蓝在内的七个最优方案。利用逼近理想解排序法(TOPSIS)对不同重现期下的这七种方案进行了分析。结果表明:(1)在组合布置排水设施时,与单一排水相比,峰值流量减少显著提高;(2)TOPSIS 结果表明,当成本权重为 0-0.35 时,绿灰和蓝灰表现较好,当成本权重为 0.35-1 时,绿灰蓝表现最好;(3)综合绿灰蓝系统具有明显的协同效应。本研究可为城市雨水管理策略的规划部门工作人员提供支持。