CN203768147U - Pretreatment system with double water inlet pipes - Google Patents
Pretreatment system with double water inlet pipes Download PDFInfo
- Publication number
- CN203768147U CN203768147U CN201420153824.8U CN201420153824U CN203768147U CN 203768147 U CN203768147 U CN 203768147U CN 201420153824 U CN201420153824 U CN 201420153824U CN 203768147 U CN203768147 U CN 203768147U
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- China
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- threeway
- valve
- water
- delivery mechanism
- submersible pump
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Abstract
The utility model provides a pretreatment system with double water inlet pipes. The pretreatment system comprises a first water delivery mechanism, a second water delivery mechanism and a grit chamber, wherein the first water delivery mechanism comprises a first submersible pump; the second water delivery mechanism comprises a second submersible pump; the first water delivery mechanism and the second water delivery mechanism are connected with a water inlet of the grit chamber through a tee joint and are also connected with a third valve; the other end of the third valve is connected with an air compressor; the other end of a pipeline for connecting the first water delivery mechanism, the second water delivery mechanism and the third valve is connected with a tap water outlet of the grit chamber; the water outlet of the grit chamber is connected with all detecting equipment; and water inlets of the first submersible pump and the second submersible pump are respectively provided with a filter screen. The pretreatment system has the beneficial effects of simple structure, convenience in operation and high production efficiency.
Description
Technical field
The utility model belongs to water quality detection field, especially relates to a kind of double water inlet pipes pretreatment system.
Background technology
In existing technology, waste water is carried out to water quality detection, pre-treatment is a wherein very important link.In the time that Jiang Shui is sent to test set, due to the impurity alluvial in water, can cause line clogging, equipment can not normally use; And sampling pool is positioned at 300 meters of distant places of test set, and pipeline is longer, the easy breed bacteria of pipeline of long duration, the precision that impact detects.
Summary of the invention
The purpose of this utility model is to provide a kind of simple in structure, easy to operate, double water inlet pipes pretreatment system that production efficiency is high, is especially applicable to water quality detection field.
The technical solution of the utility model is: a kind of double water inlet pipes pretreatment system, comprise the first water delivery mechanism, the second water delivery mechanism and settling pit,
Described the first water delivery mechanism comprises the first submersible pump, described the first submersible pump water-in is located at below the sampling pool water surface, water outlet is connected by the first threeway with the first valve being located on pipeline, the described first threeway the other end is connected with the second valve, described second valve door is connected with ozonizer by the second threeway, the second threeway the other end is connected with the 3rd threeway lower end, and the 3rd threeway upper end is connected with the 3rd valve, and described the 3rd valve the other end is connected with air compressor machine;
Described the second water delivery mechanism comprises the second submersible pump, described the second submersible pump water-in is located at below the sampling pool water surface, water outlet is connected by the 4th threeway with the 4th valve being located on pipeline, described the 4th threeway the other end is connected with the 5th valve, described the 5th valve passes through the 5th threeway and is connected with ozonizer, the 5th threeway the other end is connected with the 6th threeway lower end, and the 6th threeway left end is connected with the 3rd threeway right-hand member;
Between described the first valve and the 4th valve and pressure transmitter, be connected by the 7th threeway, the pressure transmitter the other end is connected with settling pit water-in by pipeline, the described settling pit from the beginning mouth of a river is connected by pipeline with the 6th valve, described the 6th valve the other end is connected with the 7th threeway lower end, described the 7th threeway left end is connected with the 6th threeway right-hand member, described settling pit water outlet and the 7th threeway right-hand member are connected respectively to test set, and described the first and second submersible pump water-ins are equipped with filtering net.
Advantage and the positively effect that the utlity model has are: owing to adopting double water inlet pipes setting, the problem that while having solved line clogging, pretreatment system can not move, and submersible pump water inlet pipe is provided with filtering net who is tentatively filtered, also reduced the possibility of line clogging, ozonizer is connected with pipeline simultaneously, pipeline is carried out to germicidal action, and the interfering factors while removing water quality detection, makes detected result more accurate.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model
In figure:
1, settling pit | 2, the first submersible pump | 3, the first valve |
4, the first threeway | 5, the second valve | 6, the second threeway |
7, ozonizer | 8, the 3rd threeway | 9, the 3rd valve |
10, air compressor machine | 11, the second submersible pump | 12, the 4th valve |
13, the 4th threeway | 14, the 5th valve | 15, the 5th threeway |
16, the 6th threeway | 17, pressure transmitter | 18, the 7th threeway |
19, the 6th valve | 20, the 7th threeway | ? |
Embodiment
As shown in Figure 1, the technical solution of the utility model is: a kind of double water inlet pipes pretreatment system, comprise the first water delivery mechanism, the second water delivery mechanism and settling pit 1,
Described the first water delivery mechanism comprises the first submersible pump 2, described the first submersible pump 2 water-ins are located at below the sampling pool water surface, water outlet is connected by the first threeway 4 with the first valve 3 being located on pipeline, described first threeway 4 the other ends are connected with the second valve 5, described the second valve 5 by the second threeway 6 be connected with ozonizer 7, second threeway 6 the other ends are connected with the 3rd threeway 8 lower ends, the 3rd threeway 8 upper ends are connected with the 3rd valve 9, described the 3rd valve 9 the other ends be connected with air compressor machine 10;
Described the second water delivery mechanism comprises the second submersible pump 11, described the second submersible pump 11 water-ins are located at below the sampling pool water surface, water outlet is connected by the 4th threeway 13 with the 4th valve 12 being located on pipeline, described the 4th threeway 13 the other ends are connected with the 5th valve 14, described the 5th valve 14 by the 5th threeway 15 be connected with ozonizer 7, the 5th threeway 15 the other ends are connected with the 6th threeway 16 lower ends, and the 6th threeway 16 left ends are connected with the 3rd threeway 8 right-hand members;
Between described the first valve 3 and the 4th valve 12 and pressure transmitter 17, be connected by the 7th threeway 18, pressure transmitter 17 the other ends are connected with settling pit 1 water-in by pipeline, the described settling pit 1 from the beginning mouth of a river is connected by pipeline with the 6th valve 19, described the 6th valve 19 the other ends are connected with the 7th threeway 20 lower ends, described the 7th threeway 20 left ends are connected with the 6th threeway 16 right-hand members, described settling pit 1 water outlet and the 7th threeway 20 right-hand members are connected respectively to test set, and described the first and second submersible pump water-ins are equipped with filtering net.
The working process of this example:
Usually while work, by filtering net, the impurity particle of large is filtered out, the first submersible pump operation, draws up water come, the first valve open, and the second valve, the 3rd valve, the 4th valve and the 6th valve are all closed, and process pressure transmitter is sent water into settling pit;
When cleaning, close the first valve and the second valve, open the 3rd valve, the 4th valve, the 5th valve and the 6th valve, tap water is delivered to settling pit, pipeline and settling pit are cleaned;
When alluvial occurs pipeline, for example the pipeline in the first water delivery mechanism deposits, and closes the first valve, opens the 4th valve, and settling pit is carried out to water delivery, opens the second valve and the 3rd valve, closes the 6th valve, and the pipeline that alluvial occurs is cleaned.
Above an embodiment of the present utility model is had been described in detail, but described content is only preferred embodiment of the present utility model, can not be considered to for limiting practical range of the present utility model.All equalization variation and improvement etc. of doing according to the utility model application range, within all should still belonging to patent covering scope of the present utility model.
Claims (1)
1. a double water inlet pipes pretreatment system, comprises the first water delivery mechanism, the second water delivery mechanism and settling pit, it is characterized in that:
Described the first water delivery mechanism comprises the first submersible pump, described the first submersible pump water-in is located at below the sampling pool water surface, water outlet is connected by the first threeway with the first valve being located on pipeline, the described first threeway the other end is connected with the second valve, described second valve door is connected with ozonizer by the second threeway, the second threeway the other end is connected with the 3rd threeway lower end, and the 3rd threeway upper end is connected with the 3rd valve, and described the 3rd valve the other end is connected with air compressor machine;
Described the second water delivery mechanism comprises the second submersible pump, described the second submersible pump water-in is located at below the sampling pool water surface, water outlet is connected by the 4th threeway with the 4th valve being located on pipeline, described the 4th threeway the other end is connected with the 5th valve, described the 5th valve passes through the 5th threeway and is connected with ozonizer, the 5th threeway the other end is connected with the 6th threeway lower end, and the 6th threeway left end is connected with the 3rd threeway right-hand member;
Between described the first valve and the 4th valve and pressure transmitter, be connected by the 7th threeway, the pressure transmitter the other end is connected with settling pit water-in by pipeline, the described settling pit from the beginning mouth of a river is connected by pipeline with the 6th valve, described the 6th valve the other end is connected with the 7th threeway lower end, described the 7th threeway left end is connected with the 6th threeway right-hand member, described settling pit water outlet and the 7th threeway right-hand member are connected respectively to test set, and described the first and second submersible pump water-ins are equipped with filtering net.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420153824.8U CN203768147U (en) | 2014-04-01 | 2014-04-01 | Pretreatment system with double water inlet pipes |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420153824.8U CN203768147U (en) | 2014-04-01 | 2014-04-01 | Pretreatment system with double water inlet pipes |
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CN203768147U true CN203768147U (en) | 2014-08-13 |
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CN201420153824.8U Expired - Fee Related CN203768147U (en) | 2014-04-01 | 2014-04-01 | Pretreatment system with double water inlet pipes |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109855914A (en) * | 2019-03-07 | 2019-06-07 | 苏州奥特福环境科技有限公司 | A kind of binary channels sampling apparatus and method for river water quality monitoring system |
-
2014
- 2014-04-01 CN CN201420153824.8U patent/CN203768147U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109855914A (en) * | 2019-03-07 | 2019-06-07 | 苏州奥特福环境科技有限公司 | A kind of binary channels sampling apparatus and method for river water quality monitoring system |
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Legal Events
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C56 | Change in the name or address of the patentee | ||
CP03 | Change of name, title or address |
Address after: 300402, 22 floor, Tianjin energy saving building, No. 80, Xingguang Road, Beizhen, Xiqing, Tianjin Patentee after: Hope Technology (Tianjin) Limited by Share Ltd Address before: 300402 Zhonglian Industrial Park, Xiqing automotive industry zone, Xiqing District, Tianjin, Tianjin 3-116 Patentee before: Tianjin Hope Environmental Protection Technology Co., Ltd |
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140813 Termination date: 20200401 |
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CF01 | Termination of patent right due to non-payment of annual fee |