Sewage-intercepting optimization system of interception type water draining pump station additionally provided with porous water-permeating partitioning wall

A technology for permeable isolation and drainage pumping station, which is applied in waterway systems, drainage structures, and sewage removal. Stream pollution, good social and economic benefits, and the effect of improving water environment quality

Active Publication Date: 2017-06-13
TONGJI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the combined drainage system, during sunny days, early rains and light rains, the flow of rainwater and sewage in the pipeline is small, and the designed sewage interception pump in dry weather is easy to deposit pollutants in the drainage pipeline and the sump of the drainage pumping station due to the small flow. It can effectively intercept the amount of sewage, but it is difficult to effectively intercept the corresponding pollutants or pollution loads; when the overflow in rainy days or the rainwater pump is released into the river, the sediment or pollution load accumulated in the previous period will be washed by the high-velocity rainwater and released into the river with the overflow. have a serious impact on the water quality of receiving water bodies
At the same time, due to various reasons, the rainwater pipe network of my country's separate drainage system has been mixed with different degrees of sewage, which has become a de facto combined pipe network. There is a rainy day overflow discharge river pollution similar to the confluence pumping station
[0003] The drainage system (interception drainage pumping station) where the sewage interception pump is installed or added is because the volume of the sump of the pump station is designed according to the maximum flow rate of the rainwater pump for 30 seconds, which is much larger than the area and volume of the sump basin required for the design flow rate of the sewage interception pump for 5 minutes. As a result, a certain proportion of pollutants in the rainwater are deposited in the pipeline and the sump in the form of sediments in dry weather or when the rainwater pump is not started in light rain; due to the limited suction capacity and range of the sewage interception pump, it is difficult to effectively transport this part of the rainwater. sewage pollution load
When the rainwater pump is turned on to release the river in rainy days, due to the suction of the rainwater pump, the flow field flow rate in the pipeline and the sump increases, and the accumulated pollution load in the early stage is violently pumped and released into the river with the rainwater, which intensifies the water pollution.
At the same time, since it is difficult to carry out large-scale engineering transformation in the drainage pumping station that has been completed and put into use (for example, the transformation period will affect the transportation of rainwater and sewage in the area, etc.), it is necessary to find a relatively simple and short construction period. method to improve the problem of pollutant deposition in the sump in dry weather and improve the effective interception performance of the interception pump

Method used

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  • Sewage-intercepting optimization system of interception type water draining pump station additionally provided with porous water-permeating partitioning wall
  • Sewage-intercepting optimization system of interception type water draining pump station additionally provided with porous water-permeating partitioning wall
  • Sewage-intercepting optimization system of interception type water draining pump station additionally provided with porous water-permeating partitioning wall

Examples

Experimental program
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Effect test

Embodiment 1

[0039] Such as Figure 1-3 As shown, an interception drainage pumping station sewage interception optimization system with a porous permeable separation wall is added. The system includes a sump 6 with an open top, an upstream confluence pipe or rainwater inlet pipe 1 connected with the sump 6, and a water flow along the The direction is arranged in turn in the water inlet channel 3, the water inlet grille 4, the porous water-permeable partition wall 7 and the diversion wall in the sump 6. There are a pair of porous water-permeable partition walls 7, which are relatively arranged in the sump 6. The grid 4, the porous water-permeable separation wall 7, and the diversion wall are jointly set up to form an embedded sewage interception pool 5 with an open top and is independent of the sump 6. The embedded sewage interception pool 5 separates the sump 6 into Two subdivision sumps 6 that are independent of each other, each subdivision sump 6 is equipped with a rainwater pump 9 and a...

Embodiment 2

[0047] In this embodiment, the porous water-permeable separation wall 7 is a combined porous water-permeable separation wall formed by combining a plurality of equal-height separation walls side by side. In the combined porous permeable partition wall 7, the joint sections between two adjacent partition walls of the same height are sealed by cross-cutting or rubber sheets, and the permeable fillers are quartz sand, pebbles, anthracite, zeolite and other fillers, or artificially prepared glass balls. The concrete structure of porous permeable partition wall 7 is as follows: Figure 4 shown.

[0048] All the other are with embodiment 1.

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Abstract

The invention relates to a sewage-intercepting optimization system of an interception type water draining pump station additionally provided with a porous water-permeating partitioning wall. The sewage-intercepting optimization system comprises a water collecting pool with an opened top part, an upstream combined pipeline or a rainwater feeding pipe communicated with the water collecting pool, water feeding channels arranged in the water collecting pool in sequence along the water flowing direction, a water feeding grating, porous water-permeating partitioning wallsand a flow guiding wall,wherein the water feeding grating, the porous water-permeating partitioning wall and the flow guiding wall enclose into an embedded type sewage intercepting pool commonly, and the embedded type sewage intercepting pool is opened at the top part, is independent from the water collecting pool and partitions the water collecting pool into two independent branched water collecting pools which are internally and respectively provided with a rainwater pump and a water draining pipe network communicated with the rainwater pump; and the embedded type sewage intercepting pool is internally provided with a sewage intercepting pump and a sewage draining pipe network communicated with the sewage intercepting pump. Compared with the prior art, the sewage-intercepting optimization system is applicable to high-efficiency sewage-intercepting modification of built combined sewage treatment and drainage pump stations and rainwater pump stations mixed with separated sewage treatment and drainage systems.

Description

technical field [0001] The invention belongs to the technical field of rainwater and sewage treatment, and relates to a sewage interception optimization system of an interception drainage pumping station with a porous water-permeable separation wall added. Background technique [0002] Drainage pumping stations are used to discharge rainwater and sewage collected in catchment service areas, and can be divided into combined pumping stations (serving combined drainage system) and rainwater pumping stations (serving diverted drainage system). In the combined drainage system, during sunny days, early rains and light rains, the flow of rainwater and sewage in the pipeline is small, and the designed sewage interception pump in dry weather is easy to deposit pollutants in the drainage pipeline and the sump of the drainage pumping station due to the small flow. It can effectively intercept the amount of sewage, but it is difficult to effectively intercept the corresponding pollutant...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E03F1/00E03F5/00E03F5/10E03F5/22
CPCE03F1/002E03F5/00E03F5/10E03F5/105E03F5/22
Inventor 徐祖信金伟徐晋李怀正
Owner TONGJI UNIV
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