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基于排水系统动态运行特征的绿色基础设施布局。

Green infrastructure layout based on a dynamic operation feature of drainage systems.

机构信息

School of Environment, Tsinghua University, Beijing 100084, China.

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 E-mail:

出版信息

Water Sci Technol. 2024 Jun;89(11):2936-2950. doi: 10.2166/wst.2024.169. Epub 2024 May 24.

Abstract

Increasingly frequent urban floods strain the traditional grey infrastructure, overwhelming the capacity of drainage networks and causing challenges in managing stormwater. The heavy precipitation leads to flooding and damage to drainage systems. Consequently, efficient mitigation strategies for flooding have been researched deeply. Green infrastructure (GI) has proved to be effective in responding the increasing risk of flood and alleviate pressure on drainage systems. However, as the primary infrastructure of stormwater management, there is still a lack of attention to the dynamic operation feature of urban sewer systems during precipitation events. To fill this gap, we proposed a novel approach that integrates hydraulic characteristics and the topological structure of a sewer network system. This approach aims to identify influential nodes, which contribute to the connectivity of the sewer network amidst dynamic changes in inflow during precipitation events. Furthermore, we adopted rain barrels to serve as exemplars of GI, and 14 GI layout schemes are produced based on the different ranks of influential nodes. Implementing GI measures on both poorly performing and well-performing nodes can yield distinct benefits in mitigating node flooding. This approach provides a new perspective for stormwater management, establishing effective synergy between GI and the drainage system.

摘要

日益频繁的城市洪水给传统的灰色基础设施带来了压力,排水网络的容量已达到极限,给雨水管理带来了挑战。强降雨导致洪水泛滥和排水系统受损。因此,人们深入研究了有效的防洪缓解策略。绿色基础设施(GI)已被证明在应对日益增长的洪水风险和减轻排水系统压力方面非常有效。然而,作为雨水管理的主要基础设施,在降水事件期间,城市下水道系统的动态运行特征仍然缺乏关注。为了填补这一空白,我们提出了一种新的方法,该方法将水力特性和下水道网络的拓扑结构结合起来。该方法旨在识别在降水事件中,由于流入量的动态变化而导致下水道网络连通性发生变化的影响节点。此外,我们采用雨水桶作为 GI 的范例,并根据影响节点的不同等级生成了 14 种 GI 布局方案。在性能较差和性能较好的节点上实施 GI 措施,可以显著减轻节点洪水的影响。该方法为雨水管理提供了一个新的视角,在 GI 和排水系统之间建立了有效的协同作用。

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