CN205000403U - Water absorbing device - Google Patents

Water absorbing device Download PDF

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Publication number
CN205000403U
CN205000403U CN201520777665.3U CN201520777665U CN205000403U CN 205000403 U CN205000403 U CN 205000403U CN 201520777665 U CN201520777665 U CN 201520777665U CN 205000403 U CN205000403 U CN 205000403U
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CN
China
Prior art keywords
water
valve
shape
pipeline
sealing radiator
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201520777665.3U
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Chinese (zh)
Inventor
李进平
周力平
苏凯
蒋盛华
杨通
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Wuhan University WHU
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Wuhan University WHU
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Publication date
Application filed by Wuhan University WHU filed Critical Wuhan University WHU
Priority to CN201520777665.3U priority Critical patent/CN205000403U/en
Application granted granted Critical
Publication of CN205000403U publication Critical patent/CN205000403U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a water absorbing device, including multiunit n venturi tube way (1), water source storehouse (8) and sealed water tank (10), water source storehouse (8) through water pump tube (4) and be arranged in upper reaches water source water pump (5) the intercommunication, multiunit n venturi tube way (1) top communicate through having water injection pipe (6) and water source storehouse (8) of annotating water pipe valve (7) respectively, N venturi tube way (1) negative pressure pipeline (11) and sealed water tank (10) intercommunication that lies in a high position through having negative pressure control valve (12), the vent pipe who has breather valve (15) is connected on the upper portion of sealed water tank (10), and the sub -unit connection has the blow -off line of high -order outlet valve (16). The utility model discloses the energy resource consumption can be reached and zero, the unmanned on duty that draws water is tend to, operation safety, the relevant cost who has by a wide margin reduced pump station managers pays, has really accomplished the unattended management of pump station.

Description

A kind of water absorber
Technical field
The utility model relates to water conservancy irrigation and drainage technical field, is specifically related to a kind of water absorber and water suction method thereof.
Background technology
Farmland-use water adopts gravity irrigation and pumping plant irrigation by pumping mostly, when water pumper irrigation by pumping runs, needs power consumption, oil consumption, power consumption source.And whenever flood season, large stretch of farmland is not had by water logging, fast water drainage is the cardinal task of peasant, but because of electric power facility damage, road caves in, cause irrigation station normally not run, finally cause agricultural to take a bath.How to improve draw water efficiency and the energy consumption reducing irrigation and drainage, annoying numerous scientific research personnel always.
Utility model content
The purpose of this utility model is the water absorber providing a kind of low energy consumption.
A kind of water absorber, comprise many group n shape pipelines 1, storehouse, water source 8 and sealing radiator 10, it is characterized in that: described storehouse, water source 8 is communicated with the water pump 5 being arranged in water source, upstream by water pump pipeline 4, described many groups n shape pipeline 1 top is communicated with storehouse, water source 8 respectively by the water injection pipe 6 with water injection pipe valve 7, described n shape pipeline 1 is communicated with the sealing radiator 10 being positioned at a high position by the negative-pressure pipeline 11 with negative pressure control valve 12, the upper connecting straps of sealing radiator 10 has the air duct of breather valve 15, lower connecting strap has the blow-off line of high-order outlet valve 16, sealing radiator 10 side connects hydrating structure 24 by the pumping conduit 13 being provided with suction water pipe control valve 14.
The upstream water inlet end of described n shape pipeline 1 is provided with n shape water inlet tube mouth valve 2, and water side is the n shape pipe delivery port 18 being provided with n shape pipe outlet valve 17.
Some suction water pipes 23 that described hydrating structure 24 comprises Waterskiing board 20, is arranged on the buoyancy circle 21 of Waterskiing board 20 top edge, is arranged on the hydrating structure water inlet 19 of Waterskiing board central authorities, is arranged on the guiding gutter 22 of Waterskiing board bottom and is communicated with guiding gutter, described suction water pipe 23 one end is communicated with pumping conduit 13, be convenient to downstream water to introduce sealing radiator 10 from water absorber, described hydrating structure water inlet 19 aims at n shape pipe delivery port 18.
Described n shape pipe delivery port 18 lower than up-stream face higher than the downstream water surface.
The water inlet end of described n shape pipeline 1 is provided with and blocks dirty cover 3.
Utilize a water suction method for above-mentioned water absorber, comprise following steps:
1. close the entery and delivery port valve of n shape pipeline, start pumping for water pump to storehouse, water source, opening storehouse, water source water injection pipe valve, is the water filling of at least one group of n shape pipeline;
2. after n shape pipeline is full of water, close water injection pipe valve, open the entery and delivery port valve of n shape pipeline, current continuous stream is to downstream;
3. the breather valve of sealing radiator and high-order outlet valve is closed, and pumping conduit control valve, open the negative tube control valve of sealing radiator, gas in sealing radiator is extracted out by the upper negative-pressure pipeline of n shape pipeline gradually, make to form negative pressure state in sealing radiator, open drinking-water pipe control valve, the water inlet of hydrating structure is aimed at n shape pipe delivery port, under suction function, the water source of riverbed downstream low water stage is extracted in sealing radiator, after water tank to be sealed is full of water, close negative tube control valve and drinking-water pipe control valve, open the breather valve of sealing radiator and the high-order outlet valve of sealing radiator, water in sealing radiator flows to highland by blow-off line under atmospheric pressure and needs water place,
4. when the sealing radiator process of discharging water starts, another group n shape pipeline is started working, repeat step 1.-3. be all the other n shape pipeline water fillings, the water source of riverbed downstream low water stage is extracted in another sealing radiator, take out full after to be flow to by another sealing radiator blow-off line and highly need water place.
The advantage of the inventive method is: can reach energy consumption and go to zero, draw water unmanned, security of operation, significantly reduces the correlative charges expenditure of pumping plant administrative staff, has really accomplished the unattended of pumping plant.
Accompanying drawing explanation
Fig. 1 is the overall structure schematic diagram of the utility model device;
Fig. 2 is the side schematic view of hydrating structure in the utility model;
Fig. 3 is the schematic top plan view of hydrating structure in the utility model;
In figure: 1-n shape pipeline, 2-n shape water inlet tube mouth valve, 3-blocks dirty cover, 4-water pump pipeline, 5-water pump, 6-water injection pipe, 7-water injection pipe valve, storehouse, 8-water source, storehouse, 9-water source ventilating pipe, 10-sealing radiator, 11-negative-pressure pipeline, 12-negative tube control valve, 13-pumping conduit, 14-suction water pipe control valve, 15-breather valve, the high-order outlet valve of 16-, 17-n shape pipe outlet valve, 18-n shape pipe delivery port, 19-hydrating structure water inlet, 20-Waterskiing board, 21-buoyancy circle, 22-guiding gutter, 23-suction water pipe, 24-hydrating structure.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model is further described: as Figure 1-3, a kind of water absorber, comprise many group n shape pipelines 1, storehouse, water source 8 and sealing radiator 10, it is characterized in that: described storehouse, water source 8 is communicated with the water pump 5 being arranged in water source, upstream by water pump pipeline 4, described many groups n shape pipeline 1 top is communicated with storehouse, water source 8 respectively by the water injection pipe 6 with water injection pipe valve 7, described many group n shape pipelines 1 are communicated with the sealing radiator 10 being positioned at a high position by the negative-pressure pipeline 11 with negative pressure control valve 12, the upper connecting straps of sealing radiator 10 has the air duct of breather valve 15, lower connecting strap has the blow-off line of high-order outlet valve 16, sealing radiator 10 side connects hydrating structure 24 by the pumping conduit 13 being provided with suction water pipe control valve 14.
The upstream water inlet end of described many groups n shape pipeline 1 is provided with n shape water inlet tube mouth valve 2, and water side is the n shape pipe delivery port 18 being provided with n shape pipe outlet valve 17.
Some suction water pipes 23 that described water absorber 24 comprises Waterskiing board 20, is arranged on the buoyancy circle 21 of Waterskiing board 20 top edge, is arranged on the hydrating structure water inlet 19 of Waterskiing board central authorities, is arranged on the guiding gutter 22 of Waterskiing board bottom and is communicated with guiding gutter, described suction water pipe 23 one end is communicated with pumping conduit 13, be convenient to downstream water to introduce sealing radiator 10 from water absorber, described hydrating structure water inlet 19 aims at n shape pipe delivery port 18.
Described n shape pipe delivery port 18 lower than up-stream face higher than the downstream water surface.
The water inlet end of described n shape pipeline 1 is provided with and blocks dirty cover 3.
Utilize a water suction method for above-mentioned water absorber, comprise following steps:
1. close the entery and delivery port valve of n shape pipeline, start pumping for water pump to storehouse, water source, opening storehouse, water source water injection pipe valve, is the water filling of at least one group of n shape pipeline;
2. after n shape pipeline is full of water, close water injection pipe valve, open the entery and delivery port valve of n shape pipeline, current continuous stream is to downstream;
3. the breather valve of sealing radiator and high-order outlet valve is closed, and pumping conduit control valve, open the negative tube control valve of sealing radiator, gas in sealing radiator is extracted out by the upper negative-pressure pipeline of n shape pipeline gradually, make to form negative pressure state in sealing radiator, open drinking-water pipe control valve, the water inlet of hydrating structure is aimed at n shape pipe delivery port, under suction function, the water source of riverbed downstream low water stage is extracted in sealing radiator, after water tank to be sealed is full of water, close negative tube control valve and drinking-water pipe control valve, open the breather valve of sealing radiator and the high-order outlet valve of sealing radiator, water in sealing radiator flows to highland by blow-off line under atmospheric pressure and needs water place,
4. when the sealing radiator process of discharging water starts, another group n shape pipeline is started working, repeat step 1.-3. be all the other n shape pipeline water fillings, the water source of riverbed downstream low water stage is extracted in another sealing radiator, take out full after to be flow to by another sealing radiator blow-off line and highly need water place.
Valve in current laboratory test is Non-follow control, in actual applications in order to convenient operation, adopts each valve switch of control program Long-distance Control.By selecting the employing of sensor and the Automatic Control Strategy be applicable to, thus make pump process more convenient and reliable.

Claims (5)

1. a water absorber, comprise many groups n shape pipeline (1), storehouse, water source (8) and sealing radiator (10), it is characterized in that: described storehouse, water source (8) is communicated with the water pump (5) being arranged in water source, upstream by water pump pipeline (4), described many groups n shape pipeline (1) top is communicated with storehouse, water source (8) respectively by the water injection pipe (6) with water injection pipe valve (7), described n shape pipeline (1) is communicated with the sealing radiator (10) being positioned at a high position by the negative-pressure pipeline (11) with negative pressure control valve (12), the upper connecting straps of sealing radiator (10) has the air duct of breather valve (15), lower connecting strap has the blow-off line of high-order outlet valve (16), sealing radiator (10) side connects hydrating structure (24) by the pumping conduit (13) being provided with suction water pipe control valve (14).
2. a kind of water absorber as claimed in claim 1, is characterized in that: the upstream water inlet end of n shape pipeline (1) is provided with n shape water inlet tube mouth valve (2), and water side is for being provided with n shape pipe delivery port (18) of n shape pipe outlet valve (17).
3. a kind of water absorber as claimed in claim 1, it is characterized in that: described hydrating structure (24) comprises Waterskiing board (20), be arranged on the buoyancy circle (21) of Waterskiing board (20) top edge, be arranged on the hydrating structure water inlet (19) of Waterskiing board central authorities, the guiding gutter (22) being arranged on Waterskiing board bottom and the some suction water pipes (23) be communicated with guiding gutter, described some suction water pipes (23) one end is communicated with pumping conduit (13), downstream water is convenient to introduce sealing radiator (10) from water absorber, described hydrating structure water inlet (19) aims at n shape pipe delivery port (18).
4. a kind of water absorber as claimed in claim 1, is characterized in that: described n shape pipe delivery port (18) lower than up-stream face higher than the downstream water surface.
5. a kind of water absorber as claimed in claim 1, is characterized in that: the water inlet end of described n shape pipeline (1) is provided with and blocks dirty cover (3).
CN201520777665.3U 2015-10-09 2015-10-09 Water absorbing device Withdrawn - After Issue CN205000403U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520777665.3U CN205000403U (en) 2015-10-09 2015-10-09 Water absorbing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520777665.3U CN205000403U (en) 2015-10-09 2015-10-09 Water absorbing device

Publications (1)

Publication Number Publication Date
CN205000403U true CN205000403U (en) 2016-01-27

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ID=55157299

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520777665.3U Withdrawn - After Issue CN205000403U (en) 2015-10-09 2015-10-09 Water absorbing device

Country Status (1)

Country Link
CN (1) CN205000403U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105297832A (en) * 2015-10-09 2016-02-03 武汉大学 Water suction device and water suction method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105297832A (en) * 2015-10-09 2016-02-03 武汉大学 Water suction device and water suction method thereof

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned
AV01 Patent right actively abandoned

Granted publication date: 20160127

Effective date of abandoning: 20170510