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Regionalized micro-ecological sponge city rainwater collection system construction method
The invention belongs to the technical field of sponge city rainwater treatment, and particularly relates to a construction method of a regional micro-ecological sponge city rainwater collection system. Comprising the following steps: constructing a rainwater storage pond, a recycling pump well, a diversion inspection well, a pretreatment well and a permeation well; the diversion inspection well is connected with a water outlet pipeline of the rainwater pipe network, water in the rainwater pipe network is collected into the diversion inspection well, the water outlet pipeline of the diversion inspection well is connected with the pretreatment well, stored water in the diversion inspection well is discharged into the pretreatment well, the water outlet pipeline of the pretreatment well is connected with the infiltration well, and water treated by the pretreatment well is discharged into the infiltration well; the infiltration well is located within the range of the rainwater storage pond; a water taking pipe of the water pump is connected into the infiltration well, and a water draining pipe is connected with a greening water supply pipe; the hydrological cycle process is combined with the ecological infrastructure, the natural accumulation, natural permeation and natural purification functions of the urban ecological infrastructure are fully played, and the continuous integrity of the ecological infrastructure of the sponge city is enhanced.
本发明属于海绵城市雨水处理技术领域,具体涉及一种区域化微生态海绵城市雨水收集系统施工方法;包括施工雨水调蓄池、回用泵井、分流检查井、预处理井以及渗透井;分流检查井连接雨水管网的出水管路,雨水管网中的水向分流检查井内汇集,分流检查井的出水管路连接预处理井,分流检查井中的蓄水向预处理井中排放,预处理井的出水管路连接渗透井,预处理井处理后的水排入渗透井内;渗透井位于雨水调蓄池范围内;回用泵井内设置水泵,水泵的取水管连接至渗透井内、排水管连接绿化供水管;将水文循环过程与生态基础设施相结合,充分发挥城市生态基础设施的自然积存、自然渗透、自然净化功能,增强了海绵城市生态基础设施的连续完整性。
Regionalized micro-ecological sponge city rainwater collection system construction method
The invention belongs to the technical field of sponge city rainwater treatment, and particularly relates to a construction method of a regional micro-ecological sponge city rainwater collection system. Comprising the following steps: constructing a rainwater storage pond, a recycling pump well, a diversion inspection well, a pretreatment well and a permeation well; the diversion inspection well is connected with a water outlet pipeline of the rainwater pipe network, water in the rainwater pipe network is collected into the diversion inspection well, the water outlet pipeline of the diversion inspection well is connected with the pretreatment well, stored water in the diversion inspection well is discharged into the pretreatment well, the water outlet pipeline of the pretreatment well is connected with the infiltration well, and water treated by the pretreatment well is discharged into the infiltration well; the infiltration well is located within the range of the rainwater storage pond; a water taking pipe of the water pump is connected into the infiltration well, and a water draining pipe is connected with a greening water supply pipe; the hydrological cycle process is combined with the ecological infrastructure, the natural accumulation, natural permeation and natural purification functions of the urban ecological infrastructure are fully played, and the continuous integrity of the ecological infrastructure of the sponge city is enhanced.
本发明属于海绵城市雨水处理技术领域,具体涉及一种区域化微生态海绵城市雨水收集系统施工方法;包括施工雨水调蓄池、回用泵井、分流检查井、预处理井以及渗透井;分流检查井连接雨水管网的出水管路,雨水管网中的水向分流检查井内汇集,分流检查井的出水管路连接预处理井,分流检查井中的蓄水向预处理井中排放,预处理井的出水管路连接渗透井,预处理井处理后的水排入渗透井内;渗透井位于雨水调蓄池范围内;回用泵井内设置水泵,水泵的取水管连接至渗透井内、排水管连接绿化供水管;将水文循环过程与生态基础设施相结合,充分发挥城市生态基础设施的自然积存、自然渗透、自然净化功能,增强了海绵城市生态基础设施的连续完整性。
Regionalized micro-ecological sponge city rainwater collection system construction method
一种区域化微生态海绵城市雨水收集系统施工方法
ZHU JIAXIANG (author) / LI DONGDONG (author) / WANG MEILI (author) / HAN BEILEI (author) / CHENG BO (author)
2024-03-08
Patent
Electronic Resource
Chinese
IPC:
E03F
SEWERS
,
Abwasserkanäle
Sponge city rainwater collection device and rainwater collection method
European Patent Office | 2024
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