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Characteristics of combined sewer overflows in Shanghai and selection of drainage systems

机译:上海市下水道综合溢流特点及排水系统选择

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The overflow frequencies of combined sewer systems (CSSs) along Suzhou Creek in Shanghai are definitely lower compared with low interception ratio and design expectation. This noteworthy phenomenon was analysed and the results indicate that large sewer storage capacity due to a dense interconnection between sewer systems, flat pipe slope and pump drainage pattern, as well as the spatial-temporal difference of rainfall on a large catchment that is integrated by the connected network, lead to the overflow frequencies of combined sewer overflows (CSOs) along Suzhou Creek that are much less than those of designed and of Japanese counterparts. The drainage hydraulic model was used to simulate the performance of typical CSSs in Shanghai centre area to further explain the phenomenon. Meanwhile, as separate systems have serious illicit connections and are subject to heavy wet weather pollution in Shanghai, separate systems did not show the expected advantage in nonpoint pollution control. Thus, keeping old CSSs in the Shanghai downtown area seems to be of great value with respect to the control of urban non-point pollution.
机译:与低截流率和低设计预期相比,上海苏州河沿岸的联合污水处理系统(CSSs)的溢流频率肯定更低。对这一值得注意的现象进行了分析,结果表明,由于下水道系统之间紧密的相互连接,平坦的管道坡度和泵的排水方式,以及大型集水区整合的大型集水区的降雨时空差异,导致大的下水道储存能力。连接网络导致苏州河沿岸的下水道溢流频率(CSO)远低于设计和日本同行的溢流频率。排水水力模型被用来模拟上海中心地区典型CSS的性能,以进一步解释该现象。同时,由于单独的系统存在严重的非法联系,并且在上海遭受严重的潮湿天气污染,因此单独的系统在非点源污染控制方面没有表现出预期的优势。因此,在控制城市面源污染方面,将旧的CSS保留在上海市区似乎具有很大的价值。

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