CN207316480U - A kind of transfer pipeline for salt slurry conveying - Google Patents
A kind of transfer pipeline for salt slurry conveying Download PDFInfo
- Publication number
- CN207316480U CN207316480U CN201721122198.6U CN201721122198U CN207316480U CN 207316480 U CN207316480 U CN 207316480U CN 201721122198 U CN201721122198 U CN 201721122198U CN 207316480 U CN207316480 U CN 207316480U
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- China
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- pipeline
- salt slurry
- pipe
- gate valve
- brine pump
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- Pusher Or Impeller Conveyors (AREA)
Abstract
A kind of transfer pipeline for salt slurry conveying, it includes the first pipeline, second pipe, the 3rd pipeline, the first gate valve and the second gate valve, first pipeline and second pipe front end are connected to the first brine pump and the second brine pump, end is crossed by three-way connection, three-way connection is connected with the 3rd pipeline, and the first gate valve and the second gate valve are respectively positioned at the end of the first pipeline and second pipe.The utility model is by varying the position of gate valve, and the distance of three-way connection and the second gate valve shortens, and shortens the length of the salt slurry siltation pipeline caused by stopping transporting in the prior art, it is therefore prevented that line clogging caused by the defeated salt slurry siltation of the first salt slurry pump work luck.
Description
Technical field
Pipe transportation technology field is the utility model is related to, more particularly, to a kind of salt slurry transfer pipeline.
Background technology
Needing to convey salt slurry in salt manufacturing production, this process coordinates pipeline to complete typically by delivery pump,
It is required that conveying equipment can work steadily in the long term.And salt slurry is solid-liquid heterogeneous fluid, equipment live load is exacerbated not
Stability.Existing solution is to use Dual OMU Servers Mode, and a preparation and a use, periodically carries out Two-channel switching.
Existing double-machine equipment discharge connection is generally taken over using Y types, as shown in Figure 1, pipeline includes the first pipeline 1, the
Two pipelines 2 and the 3rd pipeline 3, the first pipeline 1 and 2 front end of second pipe are connected to the first brine pump 6 and the second brine pump
7, end is crossed by three-way connection 8, and three-way connection 8 is connected with the 3rd pipeline 3;Set respectively on first pipeline 1 and second pipe 2
There are the first gate valve 4 and the second gate valve 5.
Such a pipe-connecting mode easily causes the blocking of stand-by pump export pipeline, such as when the first brine pump 6 works, the second salt
When stock pump 7 does not work, salt slurry is not only transported by the 3rd pipeline 3, also can some salt slurry in the second gate valve 5 and three-way connection
Pipeline siltation between 8;, it is necessary to be rushed the pipeline of blocking using substantial amounts of fresh water when being then switched to the work of the second brine pump 7
It is logical, seriously affect production efficiency.
Publication No. is that a kind of I-shaped fluid delivery pipeline flows disclosed in the application for a patent for invention of 103410199 A of CN
Body carrying method, its pipeline includes two fluid delivery pipelines, two pumps send equipment and two-way pipeline;Utilize valve and two-way pipe
The pumping equipment pipeline of fluid delivery pipeline system arranged side by side is carried out I-shaped connection by road, is realized two pumps and is sent equipment to work
Switching, reduce because pumping equipment failure causes to shut down the economic loss brought, improve production efficiency, but could not equally solve
The line clogging problem of certainly spare pumping equipment.
Utility model content
The technical problems to be solved in the utility model is:Overcome the deficiencies of the prior art and provide one kind and allow hand over pumping
Equipment, and prevent the transfer pipeline for being used for salt slurry conveying of line clogging.
Technical solution is used by the utility model solves its technical problem:A kind of delivery pipe for salt slurry conveying
Road, including the first pipeline, second pipe, the 3rd pipeline, the first gate valve and the second gate valve, the first pipeline and second pipe front end point
The first brine pump and the second brine pump are not connected with, end is crossed by three-way connection, and three-way connection is connected with the 3rd pipeline, the
One gate valve and the second gate valve are respectively positioned at the end of the first pipeline and second pipe.
In the first pipeline work, the second valve is closed, and the second gate valve is located at the end of second pipe, threeway
There is no salt slurry siltation area between connector and the second gate valve, it is therefore prevented that caused by the defeated salt slurry siltation of the first salt slurry pump work luck
Line clogging.
Further, the 3rd pipeline is located along the same line with the first pipeline or second pipe.The bend in pipeline is reduced,
Reduce the operating load of the first brine pump or the second brine pump.
Further, the first pipeline and/or second pipe are equipped with flowmeter.Flowmeter use is welded, is spirally connected, flange connects
The mode such as connect to be arranged on the first pipeline or second pipe.Flowmeter is used to detect the first pipeline and/or second pipe
Salt slurry flow.
Further, the first pipeline and/or second pipe are equipped with check valve.Check valve use is welded, is spirally connected, flange connects
The mode such as connect to be arranged on the first pipeline or second pipe.Check valve is used to prevent the first pipeline and/or second pipe
Salt slurry reflux.
Further, PLC control cabinet, PLC control cabinet and the first gate valve, the second gate valve, the first brine pump, the second salt are further included
Stock pump is connected with flowmeter.First gate valve, the second gate valve, the first brine pump and the second brine pump are controlled by PLC control cabinet
Working status, realizes the automatic running of whole process, and the operation for switching brine pump is more convenient.
The beneficial effects of the utility model:
By varying the position of gate valve, the distance of three-way connection and the second gate valve shortens, shortens existing the utility model
The length of the salt slurry siltation pipeline caused by stopping transporting in technology, it is therefore prevented that the defeated salt slurry siltation of the first salt slurry pump work luck
Caused line clogging.
Brief description of the drawings
The schematic diagram of 1 prior art transfer pipeline of Fig. 1-embodiment;
A kind of schematic diagram of the transfer pipeline for salt slurry conveying of Fig. 2-embodiment 1;
A kind of schematic diagram of the transfer pipeline for salt slurry conveying of Fig. 3-embodiment 2;
A kind of schematic diagram of the transfer pipeline for salt slurry conveying of Fig. 4-embodiment 3.
Description of reference numerals
1 first pipeline, 2 second pipes, 3 the 3rd pipelines, 4 first gate valves, 5 second gate valves, 6 first brine pumps, 7 second salt
Stock pump, 8 three-way connections, 9PLC switch boards, 10 flowmeters, 11 check valves.
Embodiment
The utility model is described in further detail with reference to the accompanying drawings and embodiments.
Embodiment 1
With reference to Fig. 2, a kind of transfer pipeline for salt slurry conveying, including the first pipeline 1, second pipe 2, the 3rd pipeline 3,
First gate valve 4 and the second gate valve 5, the first pipeline 1 and 2 front end of second pipe are connected to the first brine pump 6 and the second salt slurry
Pump 7, end is crossed by three-way connection 8, and three-way connection 8 is connected with the 3rd pipeline 3, the first gate valve 4 and the second gate valve 5 difference position
In the end of the first pipeline 1 and second pipe 2.
When the first brine pump 6 works, the second brine pump 7 does not work, salt slurry by after three-way connection 8 through the 3rd pipeline 3
Transport, the second gate valve 5 is closed at this time, because the second gate valve 5 is located at the end of second pipe 2, three-way connection 8 and second
There is no salt slurry siltation area between gate valve 5.
Embodiment 2
With reference to Fig. 3, embodiment 2 is substantially the same manner as Example 1, its difference is:
3rd pipeline 3 is located along the same line with the first pipeline 1.
Flowmeter 10 is welded with second pipe 2.
Check valve 11 is welded with second pipe 2.
Since conveying salt slurry is heterogeneous fluid, proportion is larger, and the bend of pipeline is more, and Transport resistance is bigger, increases
The operating load of brine pump.3rd pipeline 3 is located along the same line with the first pipeline 1 or second pipe 2, it is possible to reduce first
The operation that the bend number of the either 2 one of pipeline of second pipe of pipeline 1 reduces the first brine pump 6 or the second brine pump 7 is born
Lotus.In the present embodiment, the 3rd pipeline 3 is located along the same line with the first pipeline 1, from the salt slurry of the first brine pump 6 outflow through the
One pipeline 1 is directly entered three-way connection 8, halfway without bend, therefore reduces the operating load of the first brine pump 6.
Flowmeter 10 is used to detect the salt slurry flow of second pipe 2, when the second brine pump 7 is in running order, flow
The salt slurry flow of the display second pipe 2 of meter 10.Coordinate check valve 11, it is necessary to when switching to the work of the first brine pump 6, first close the
Two brine pumps 7, after the salt slurry flow-reduction that flowmeter 10 is shown, close the second valve 5, since the prevention of check valve 11 flows back
Effect, the salt slurry in second pipe 2 drains substantially at this time, it is therefore prevented that when the second brine pump 7 is out of service, because of second pipe 2
In remain excessive salt slurry and deposit cause second pipe block phenomenon.
Similarly, flowmeter 10 is arranged on the first pipeline 1, the salt slurry flow in the first pipeline 1 can be detected;In the first pipe
Check valve 11 is set on road 1, the phenomenon for coordinating flowmeter 10 to prevent the first pipeline 1 from blocking.Therefore preferred solution is first
Flowmeter 10 and check valve 11 are respectively provided with pipeline 1, second pipe 2.
Embodiment 3
With reference to Fig. 4, the embodiment 3 and the difference of embodiment 2 of the utility model are:
Transfer pipeline provided in this embodiment for salt slurry conveying further includes PLC control cabinet 9, PLC control cabinet 9 and first
Gate valve 4, the second gate valve 5, the first brine pump 6, the second brine pump 7 and flowmeter 10 connect.
In advance after 10 given threshold of flowmeter, the second brine pump 7 of closing, when flowmeter 10 is detected in second pipe 2
Salt slurry flow when being less than the threshold value, send a signal to PLC control cabinet 9, PLC control cabinet 9 controls the second gate valve 5 to close, first
Gate valve 4 is opened, the first brine pump 6 starts, and realizes the automatic running of whole process, the operation for switching brine pump is more convenient.
Claims (7)
1. a kind of transfer pipeline for salt slurry conveying, including the first pipeline, second pipe, the 3rd pipeline, the first gate valve and the
Two gate valves, the first pipeline and second pipe front end are connected to the first brine pump and the second brine pump, and end is connected by three
Head crosses, and three-way connection is connected with the 3rd pipeline, it is characterised in that the first gate valve and the second gate valve be located at respectively the first pipeline and
The end of second pipe.
2. as claimed in claim 1 for salt slurry conveying transfer pipeline, it is characterised in that the 3rd pipeline and the first pipeline or
Second pipe is located along the same line.
3. the transfer pipeline for salt slurry conveying as claimed in claim 2, it is characterised in that the first pipeline and/or the second pipe
Road is equipped with flowmeter.
4. the transfer pipeline for salt slurry conveying as claimed in claim 3, it is characterised in that the first pipeline and/or the second pipe
Road is equipped with check valve.
5. it is used for the transfer pipeline of salt slurry conveying as described in claim 3 or 4, it is characterised in that flowmeter is using welding, spiral shell
Connect, the mode such as flanged joint is arranged on the first pipeline or second pipe.
6. the transfer pipeline for salt slurry conveying as claimed in claim 4, it is characterised in that check valve use is welded, is spirally connected, method
The modes such as orchid connection are arranged on the first pipeline or second pipe.
7. it is used for the transfer pipeline of salt slurry conveying as described in claim 4 or 6, it is characterised in that further include PLC control cabinet, PLC
Switch board is connected with the first gate valve, the second gate valve, the first brine pump, the second brine pump and flowmeter.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721122198.6U CN207316480U (en) | 2017-09-04 | 2017-09-04 | A kind of transfer pipeline for salt slurry conveying |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721122198.6U CN207316480U (en) | 2017-09-04 | 2017-09-04 | A kind of transfer pipeline for salt slurry conveying |
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CN207316480U true CN207316480U (en) | 2018-05-04 |
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CN201721122198.6U Active CN207316480U (en) | 2017-09-04 | 2017-09-04 | A kind of transfer pipeline for salt slurry conveying |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114321727A (en) * | 2020-09-29 | 2022-04-12 | 宝山钢铁股份有限公司 | Transport process for transporting chemical fluids using long distance pipelines |
-
2017
- 2017-09-04 CN CN201721122198.6U patent/CN207316480U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114321727A (en) * | 2020-09-29 | 2022-04-12 | 宝山钢铁股份有限公司 | Transport process for transporting chemical fluids using long distance pipelines |
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