4.7 Article

How to simulate future scenarios of urban stormwater management? A novel framework coupling climate change, urbanization, and green stormwater infrastructure development

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 874, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.scitotenv.2023.162399

关键词

Climate change; Urbanization; Green Stormwater Infrastructure planning; Scenario simulation; Storm Water Management Model

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Climate change, urbanization, and green stormwater infrastructure planning policies create uncertainties in future urban sustainability. This study proposes a framework for simulating future urban stormwater scenarios by considering multiple factors. The study compares and analyzes changes in surface runoff and runoff pollutants in Shanghai's new and old urban areas under different scenarios. The findings highlight the importance of considering the characteristics of different urban regions, maintaining and managing green stormwater infrastructure, and developing adaptive strategies to cope with climate change, urbanization, and infrastructure destruction.
Climate change, urbanization, and green stormwater infrastructure (GSI) planning policies lead to uncertainties in future urban sustainability. Coupling multiple influencing factors such as climate change, urbanization, and GSI development, this study proposes a novel framework for simulating future scenarios of urban stormwater. Subsequently, the changes in annual surface runoff and runoff pollutants in Shanghai's new and old urban areas were compared and analyzed based on 35 typical future and seven baseline scenarios. The following results were obtained: 1) The runoff control rate of the new urban area was significantly higher than that of the old urban area before GSI construction. After GSI construction, both areas could control stormwater runoff and pollutants, while the decline in efficiency in GSI facilities enormously impacted the old area. 2) Surface runoff in the new urban area was mainly affected by urbanization, while climate change was a major factor in the old urban area; runoff pollutants in new and old urban areas were mainly affected by urbanization, and the change in pollutants in new areas was more pronounced. 3) GSI facilities were unlikely to guarantee the quantity and quality of water resources, especially in scenarios where the efficiency of GSI facilities decreases. In old urban areas, the more extreme climate change and urbanization were, the more significant the effect of improving stormwater management facilities. Our findings showed that future studies on stormwater management should specifically consider the different characteristics of new and old urban regions, pay attention to the maintenance and management of GSI facilities, and build adaptive strategies to cope with climate change, urbanization, and GSI facility destruction.

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