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Deep Tunnel for Regulating Combined Sewer Overflow Pollution and Flood Disaster: A Case Study in Guangzhou City, China

机译:调节下水道溢洪和洪灾综合作用的深层隧道:以广州市为例

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The DongHaoChong (DHC) basin is located in the central city zone of Guangzhou City, China. Owing to the high density of buildings and low quality of the drainage pipe network in the city, diversion of rain and sewage is difficult. Waterlogging occurs frequently and combined sewer overflow (CSO) pollution is a serious problem during the rainy season. Therefore, a deep tunnel for the DongHaoChong basin has been planned and its construction is currently underway. An urban rainstorm model for the DongHaoChong basin was developed on the basis of the Storm Water Management Model (SWMM), and both the interception effect of CSO pollution and the degree of mitigation of flood were analyzed. Reasonable scenarios for the deep tunnel in terms of rainstorms with different design recurrence periods were evaluated. From the viewpoints of preventing rainstorm waterlogging disasters and protecting water quality in the region downstream of DongHaoChong River, the river flood control and drainage capacities of the region were improved to a 2-year rainstorm design recurrence period by the construction of the deep tunnel. Furthermore, the main pollutant load of the CSO is expected to be reduced by about 30%–40%.
机译:东涌冲盆地(DHC)位于中国广州市的中心城区。由于城市中建筑物的高密度和排水管网的质量低下,雨水和污水的转移很难。涝灾频发,雨季下水道溢流(CSO)综合污染是一个严重的问题。因此,已经为东浩冲盆地规划了一条深层隧道,目前正在施工中。在雨水管理模型(SWMM)的基础上,建立了东浩冲盆地的城市暴雨模型,并分析了CSO污染的拦截效果和减轻洪灾的程度。对不同设计重复周期的暴雨,深隧道的合理方案进行了评估。从预防东豪冲河下游地区暴雨洪涝灾害和保护水质的角度出发,通过深隧道的建设,将该地区的河道防洪和排水能力提高到两年暴雨设计复发期。此外,预计公民社会组织的主要污染物负荷将减少约30%至40%。

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