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首页> 外文期刊>Journal of Hydrology >Sustainable stormwater management under the impact of climate change and urban densification
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Sustainable stormwater management under the impact of climate change and urban densification

机译:在气候变化和城市致密化影响下可持续雨水管理

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The demand for living space is rising in growing cities. To restrict urban expansion in the outskirts, a common strategy is to densify existing neighbourhoods. Densification implies the increase of water impervious area which increases the vulnerability to flooding during extreme precipitation events. Sustainable urban drainage systems are considered as a strategy to handle stormwater runoff locally and thus relieve the sewage system. This study investigates the combined quantitative hydrological impact of densification and sustainable stormwater management measures in a residential neighbourhood in Munich, Germany. The living-lab approach pursues the application of nature-based solutions in a real planning case to achieve positive climate effects while densifying the neighbourhood. The study is based on single event simulations of three return periods with the physically based software PCSWMM. The events are implemented for both current and climate change precipitation intensities of the RCP 8.5 projection for 2040-2069. Three scenarios are implemented: a status quo, a business as usual scenario (additional buildings without compensation measures) and a best-case scenario (one additional floor with green roofs disconnected from the sewers in combination with rain gardens and porous pavements on the land parcels). The comparison between the different scenarios focuses on three main aspects of the water balance, namely, infiltration, runoff and storage. The results show that measures for sustainable stormwater management are crucial elements to cope with an increasing number of heavy precipitation events due to climate change. The best-case scenario significantly outperforms the other two concerning water infiltration, surface runoff and storage. Most notably is the impact of climate change projection rainfall intensities for 2040-2069. The outcomes for these intensities clearly show the positive impact of sustainable water-sensitive design. The results demonstrate that it is in fact possible to enhance the water balance and gain new living space simultaneously if a sustainable urban planning strategy is implemented that includes future-oriented stormwater management.
机译:不断增长的城市对居住空间的需求正在上升。为了限制郊区的城市扩张,一个常见的策略是加密现有的街区。致密化意味着不透水面积的增加,这增加了极端降水事件期间洪水的脆弱性。可持续城市排水系统被视为一种策略,用于处理当地的雨水径流,从而缓解污水系统。这项研究调查了德国慕尼黑一个住宅区内致密化和可持续雨水管理措施的综合定量水文影响。living lab方法追求在实际规划案例中应用基于自然的解决方案,以实现积极的气候效应,同时使社区更加密集。该研究基于物理软件PCSWMM对三个重现期的单事件模拟。这些事件适用于2040-2069年RCP 8.5预测的当前和气候变化降水强度。实施了三种方案:现状方案、照常方案(没有补偿措施的额外建筑)和最佳方案(一层额外的屋顶绿化,与下水道断开连接,再加上雨水花园和地块上的多孔路面)。不同情景之间的比较侧重于水平衡的三个主要方面,即渗透、径流和蓄水。结果表明,可持续雨水管理措施是应对气候变化导致的越来越多强降水事件的关键要素。在水渗透、地表径流和蓄水方面,最佳方案的表现明显优于其他两种方案。最值得注意的是2040-2069年气候变化预测降雨强度的影响。这些强度的结果清楚地表明了可持续水敏设计的积极影响。结果表明,如果实施可持续的城市规划战略,包括面向未来的雨水管理,实际上有可能提高水平衡,同时获得新的生活空间。

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