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Combined water drainage system for sewage and rainwater and control method

A drainage system and confluence system technology, which is applied in waterway systems, sewer systems, chemical instruments and methods, etc., can solve problems such as inability to intercept initial rainwater, inability to control non-point source pollution, and entry of non-point source pollutants

Pending Publication Date: 2018-03-16
WUHAN SHENGYU DRAINING SYST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] For this combined drainage system, the main problems are: ① When it rains, non-point source pollution will be generated on residential areas and municipal roads. Although the existing combined drainage system has an interception well at the end for interception, the designed interception The multiple is not enough, so that the interception well fails to intercept the non-point source pollutants, and the non-point source pollutants directly enter the natural water body, causing pollution to the natural water body
② To control non-point source pollution, it is necessary to increase the size of the interception well, increase the size of the interception main pipe, and increase the capacity of the sewage plant
③ The interception of the interception is an extensive control, and the initial rainwater cannot be accurately intercepted
There are many problems in this split drainage system: ① Some sewage in the residential area enters the rainwater pipe by mistake, for example, the sewage discharged from the washing machine on the balcony will be directly discharged into the natural water body
The main problems of this drainage system are: ①The entire system cannot effectively intercept non-point source pollutants, and the interception efficiency is low
② Unable to control the sewage entering the rainwater pipe
④ Extensive control of interception wells. On the one hand, it may not be possible to send more initial rainwater to the sewage plant for treatment, causing non-point source pollutants to be discharged into natural water bodies. On the other hand, it may send a large amount of late rainwater to the sewage plant, increasing the sewage The load of the plant reduces the treatment efficiency of the sewage plant
[0007] Generally speaking, the current drainage system has the following problems: first, the non-point source pollution cannot be controlled; second, the control is extensive, and the sewage and initial rainwater cannot be precisely controlled; third, the pipelines are mixed, and the sewage is directly discharged to the Natural water bodies; Fourth, for areas with tight land use, terminal treatment cannot be effectively implemented
[0008] At the same time, the inventors also found that this situation is even more serious for some old urban areas or urban villages. Due to the imperfect design of the previous rain and sewage pipe network, many units such as old urban areas or urban villages There is no rainwater main pipe and sewage treatment plant in the area, or the original combined main pipe did not separate the collected rainwater from the domestic sewage discharged into it, so that the sewage and rainwater are directly discharged to the municipal sewage main pipe, and discharged to the sewage main. The rainwater from the pipe increases the treatment intensity of the sewage treatment plant at the end of the sewage main, making it inefficient
[0009] In addition, if there is a lot of precipitation in the area where the old city or urban village is located, it will increase the treatment intensity of the sewage treatment plant.

Method used

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  • Combined water drainage system for sewage and rainwater and control method

Examples

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Effect test

Embodiment 1

[0079] Such as figure 1 The combined drainage system for controlling sewage and rainwater in urban villages shown includes urban village A, where a combined main pipe A-1 is installed in urban village A; sewage main pipe B-1 and rainwater main pipe B-1 are installed on municipal roads 2; the end of the rainwater main pipe B-2 is connected to the natural water body 1, and the end of the sewage main pipe B-1 is connected to the sewage treatment plant 2; One water outlet, one is connected with the sewage main pipe B-1; one is connected with the rainwater main pipe B-2; one is connected with the primary rainwater storage tank 4; Bottom-opening weir gate 5-1, bottom-opening gate 6 is set in front of the outlet connected to rainwater main pipe B-2, and bottom-opening weir gate 5-2 is set in front of the exit connected with primary rain storage tank 4.

[0080] A biological filter 7 is arranged on the drain pipe of the sewage treatment plant 2 .

[0081] A combination of multiple h...

Embodiment 2

[0084] The method of using the system of embodiment 1 to process the urban village sewage and rainwater is:

[0085] On sunny days, the control unit controls the opening of the bottom opening weir gate 5-1 according to the received signal, the closing of the bottom opening gate 6, the closing of the bottom opening weir gate 5-2, and the diversion well 3 diverts the sewage entering the confluence main pipe A-1 To the main sewage pipe B-1 and enter the sewage treatment plant 2 for treatment;

[0086] When it rains, the control unit controls the opening of the down-opening gate 5-1 according to the received signal, the closing of the down-opening gate 6, the closing of the down-opening gate 5-2, and the diversion well 3 diverts the initial rainwater and sewage to the main sewage pipe B-1 enters the sewage treatment plant 2 for treatment; when the initial rainwater and sewage diverted to the sewage treatment plant 2 exceed its processing capacity, the control unit controls the dow...

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PUM

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Abstract

The invention relates to a combined water drainage system for sewage and rainwater. The system comprises a sewage trunk pipe arranged on a municipal road, a rainwater trunk pipe arranged on the municipal road, and a confluence header pipe for unit areas, wherein a sewage treatment plant is arranged at the outlet of the sewage trunk pipe; the tail end of the rainwater trunk pipe is connected with anatural water body; the outlet of the confluence header pipe is connected with the sewage trunk pipe; one or more flow distributing devices are arranged on the confluence header pipe, and the water inlet end of each flow distributing device communicates with the confluence header pipe; each flow distributing device is provided with three water outlets, each first water outlet is connected with the sewage trunk pipe, each second water outlet is connected with the rainwater trunk pipe, and each third water outlet is connected with a water inlet of a regulation and storage facility.

Description

technical field [0001] The invention relates to a combined drainage pipe network system, in particular to a combined sewage and rainwater drainage system and a control method. Background technique [0002] Urban municipal drainage systems are mainly divided into combined drainage systems and divergent drainage systems. The earliest combined drainage system is to mix sewage, industrial wastewater and rainwater in the same pipe, and directly discharge it into the nearby water body without any treatment, so that the receiving water body is seriously polluted. Many old cities at home and abroad almost use it this way. The interception combined drainage system is often used now. [0003] The structure of the intercepting combined drainage system is basically the same as that of the traditional combined drainage system. The difference is that the intercepting combined drainage system has an intercepting well between the municipal combined main pipe and the sewage treatment plant...

Claims

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Application Information

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IPC IPC(8): E03F1/00E03F3/02E03F5/04E03F5/10E03F5/14
CPCE03F1/00E03F3/02E03F5/0401E03F5/101E03F5/14Y02A10/30
Inventor 周超
Owner WUHAN SHENGYU DRAINING SYST
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