School of Environment, Tsinghua University, Beijing, 100084, China; Environmental Simulation and Pollution Control State Key Joint Laboratory, School of Environment, Tsinghua University, Beijing 100084, China.
School of Environment, Tsinghua University, Beijing, 100084, China.
Water Res. 2017 Nov 1;124:280-289. doi: 10.1016/j.watres.2017.07.038. Epub 2017 Jul 17.
In recent years, the concept transition from fail-safe to safe-to-fail makes the application of resilience analysis popular in urban drainage systems (UDSs) with various implications and quantifications. However, most existing definitions of UDSs resilience are confined to the severity of flooding, while uncertainties from climate change and urbanization are not considered. In this research, we take into account the functional variety, topological complexity, and disturbance randomness of UDSs and define a new formula of resilience based on three parts of system severity, i.e. social severity affected by urban flooding, environmental severity caused by sewer overflow, and technological severity considering the safe operation of downstream facilities. A case study in Kunming, China is designed to compare the effect of green and grey infrastructure strategies on the enhancement of system resilience together with their costs. Different system configurations with green roofs, permeable pavement and storage tanks are compared by scenario analysis with full consideration of future uncertainties induced by urbanization and climate change. The research contributes to the development of sustainability assessment of urban drainage system with consideration of the resilience of green and grey infrastructure under future change. Finding the response measures with high adaptation across a variety of future scenarios is crucial to establish sustainable urban drainage system in a long term.
近年来,从故障安全到安全故障的概念转变使得韧性分析在具有各种含义和量化的城市排水系统(UDS)中得到了广泛应用。然而,大多数现有的 UDS 韧性定义仅限于洪水的严重程度,而没有考虑气候变化和城市化带来的不确定性。在这项研究中,我们考虑了 UDS 的功能多样性、拓扑复杂性和干扰随机性,并基于系统严重程度的三个部分定义了一个新的韧性公式,即受城市洪水影响的社会严重程度、污水溢出造成的环境严重程度以及考虑下游设施安全运行的技术严重程度。在中国昆明进行了一项案例研究,以比较绿色和灰色基础设施策略对提高系统韧性的效果及其成本。通过情景分析,充分考虑了城市化和气候变化带来的未来不确定性,对带有绿色屋顶、透水路面和蓄水池的不同系统配置进行了比较。该研究有助于在考虑未来变化下,对城市排水系统的可持续性评估进行发展,同时考虑绿色和灰色基础设施的韧性。找到适应各种未来情景的响应措施对于建立长期可持续的城市排水系统至关重要。