CN107762859A - Using the water plug of floatage-type power set - Google Patents
Using the water plug of floatage-type power set Download PDFInfo
- Publication number
- CN107762859A CN107762859A CN201710774850.0A CN201710774850A CN107762859A CN 107762859 A CN107762859 A CN 107762859A CN 201710774850 A CN201710774850 A CN 201710774850A CN 107762859 A CN107762859 A CN 107762859A
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- China
- Prior art keywords
- buoyancy tank
- fluid reservoir
- high level
- liquid
- level fluid
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D13/00—Pumping installations or systems
- F04D13/02—Units comprising pumps and their driving means
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03B—MACHINES OR ENGINES FOR LIQUIDS
- F03B17/00—Other machines or engines
- F03B17/02—Other machines or engines using hydrostatic thrust
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/20—Hydro energy
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Other Liquid Machine Or Engine Such As Wave Power Use (AREA)
Abstract
The invention discloses a kind of water plug using floatage-type power set, the power set rotated including water pump vane and driving water pump vane, the power set are provided with the airtight chamber that gas is remained with to outer closure and the inside, high level fluid reservoir and low liquid level fluid reservoir are provided with airtight chamber, the first gate is provided between two fluid reservoirs, the second gate is provided with the upper end open-mouth of high level fluid reservoir, buoyancy tank is provided with airtight chamber and drives the mechanism of buoyancy tank shuttling movement between two fluid reservoirs, chain sprocket mechanism is provided with high level fluid reservoir, during buoyancy tank floats to liquid level from the bottom of high level fluid reservoir, buoyancy tank pulls chain, axis of rotation by chain by chain wheel drive water pump vane.It is an advantage of the invention that pollution will not be produced by being not required to burning fuel, be advantageous to environmental protection, it is not necessary to which couple power network is not influenceed by power network coverage, convenient to be installed and used in the field of employment of needs.
Description
Technical field
The present invention relates to water plug.
Background technology
Existing water plug drives the blade of water pump to rotate using motor or internal combustion engine mostly.Traditional water plug
Need to couple power network or internal combustion engine driving, the place away from power network is inconvenient for use, generates electricity using internal combustion engine or internal combustion engine drives water
Pump can produce pollution.Water plug of the present invention, which is not required to burning fuel, will not produce pollution, be advantageous to environmental protection, it is not necessary to couple
Power network is not influenceed by power network coverage, convenient to be installed and used in the field of employment of needs.
The content of the invention
It is an object of the invention to provide a kind of water plug using floatage-type power set, the water plug need to burn
Material will not produce pollution, be advantageous to environmental protection, it is not necessary to which couple power network is not influenceed by power network coverage, convenient to need
Place install and use.
What the present invention was realized in:Using the water plug of floatage-type power set, including water pump vane and driving
The power set that water pump vane rotates.The power set are provided with the airtight chamber that gas is remained with to outer closure and the inside,
Two are provided with airtight chamber and deposits the fluid reservoir for having liquid, two fluid reservoirs are respectively high level fluid reservoir and low liquid level storage
Liquid room, the liquid level in high level fluid reservoir is higher than the liquid level in low liquid level fluid reservoir;
In the bottom of two fluid reservoirs, the first gate is provided between two fluid reservoirs, when the first gate is opened, two storages
The fluid connection of liquid room, when the first closing gate, the liquid cut-off of two fluid reservoirs;
The upper end of two fluid reservoirs is open, and the second gate is provided with the upper end open-mouth of high level fluid reservoir, when the second gate closes
Can be by the open closing in the upper end of high level fluid reservoir when closing;
Buoyancy tank is provided with airtight chamber, buoyancy tank is provided with air bleeding valve and liquid feed valve, when the air bleeding valve and liquid feed valve are in open shape
State, and when buoyancy tank is fallen in the liquid in low liquid level fluid reservoir, liquid can enter buoyancy tank via the liquid feed valve, be inoculated with liquid
Buoyancy tank can sink to the bottom of low liquid level fluid reservoir;
The first travel mechanism is provided with the bottom of low liquid level fluid reservoir, is accepted by the first travel mechanism and sinks to low liquid level fluid reservoir
The buoyancy tank of bottom, and buoyancy tank movement is driven by the first travel mechanism, buoyancy tank is moved to high liquid by the first gate opened
The bottom of position fluid reservoir;
Be provided with the air inlet pipe docked with buoyancy tank and discharging tube in the bottom of high level fluid reservoir, air inlet pipe and discharging tube and buoyancy tank
One end of docking is connected with self-sealing pipe joint, and the other end of air inlet pipe is communicated to the gassiness portion in airtight chamber
Position, the other end of discharging tube are communicated to low liquid level fluid reservoir, two self-sealing pipe joints are connected with buoyancy tank, in high level
The bottom of fluid reservoir is provided with pipeline docking mechanism, and the self-sealing pipe joint of pipeline docking mechanism and air inlet pipe and discharging tube connects
Connect, drive the self-sealing pipe joint of air inlet pipe and discharging tube to move by pipeline docking mechanism, make oneself of air inlet pipe and discharging tube
The pipe joint of envelope formula is docked and separated with two self-sealing pipe joints of buoyancy tank;
The second travel mechanism and derricking gear are provided with airtight chamber, the second travel mechanism is connected with derricking gear, and second moves
Motivation structure can drive derricking gear to travel to and fro between the top of high level fluid reservoir and the top of low liquid level fluid reservoir, derricking gear connection
The hanging mechanisms of buoyancy tank can be lifted by having;
Chain sprocket mechanism is provided with high level fluid reservoir, chain is provided with tractive unit, in buoyancy tank from the bottom of high level fluid reservoir
During portion floats to liquid level, buoyancy tank withstands tractive unit upwards, so as to pull chain by tractive unit, by chain-driving sprocket wheel
Rotate;
At least one sprocket wheel is connected with the rotating shaft of a water pump vane in chain sprocket mechanism, by chain wheel drive water pump vane
Axis of rotation.
In one of the embodiments, buoyancy tank locking mechanism, buoyancy tank locking are provided with the bottom of the high level fluid reservoir
The buoyancy tank can be fixed and discharged in mechanism.
In one of the embodiments, the buoyancy tank locking mechanism is electromagnet.
In one of the embodiments, the hanging mechanisms are electromagnet.
In one of the embodiments, the discharging tube is in series with infusion pump.
In one of the embodiments, elevating mechanism is provided with the bottom of the high level fluid reservoir, elevating mechanism can incite somebody to action
The buoyancy tank elevates the liquid level in higher than the low liquid level fluid reservoir.
It is an advantage of the invention that existing water plug drives the blade of water pump to turn using motor or internal combustion engine mostly
It is dynamic.Traditional water pump need couple power network or internal combustion engine driving, away from power network place it is inconvenient for use, using internal combustion engine generate electricity or
Internal combustion engine driving water pump can produce pollution.Water plug of the present invention, which is not required to burning fuel, will not produce pollution, be advantageous to protection ring
Border, it is not necessary to which couple power network is not influenceed by power network coverage, convenient to be installed and used in the field of employment of needs.
Brief description of the drawings
Fig. 1 is the primary structure schematic diagram of the present invention;
Fig. 2 to Fig. 9 is the action process schematic diagram of power set;
Figure 10 is the schematic diagram of another embodiment of chain sprocket mechanism;
Figure 11 is the schematic diagram with guide rail constraint buoyancy tank.
Embodiment
For the ease of understanding the present invention, the present invention is described more fully with reference to the accompanying drawings.Given in accompanying drawing
The better embodiment of the present invention.But the present invention can realize in many different forms, however it is not limited to described herein
Embodiment.The purpose for providing these embodiments is the more thorough and comprehensive for making to understand the disclosure.
It should be noted that when an element is considered as " connection " another element, it can be directly to separately
One element may be simultaneously present centering elements.Term as used herein "left", "right" and similar statement are
For illustrative purposes." first " of the present invention, " second " do not represent specific quantity and order, are used only for the area of title
Point.
Using the water plug of floatage-type power set as shown in figure 1, provided with water pump vane 29 and driving water pump vane
29 power set rotated.The power set are provided with an airtight chamber 1 to outer closure, and the inside of airtight chamber 1 retains
There is gas.The gas can be but not limited to air.Two fluid reservoirs, two fluid reservoir difference are provided with airtight chamber 1
For high level fluid reservoir 2 and low liquid level fluid reservoir 3.The liquid level for the liquid 4 that high level fluid reservoir 2 is deposited stores up higher than low liquid level
The liquid level for the liquid 5 that liquid room 3 is deposited.The liquid can be but not limited to water.In the bottom of two fluid reservoirs 2,3, in
The first gate 6 is provided between two fluid reservoirs 2,3.When the first gate 6 is opened, the liquid 4,5 of two fluid reservoirs 2,3 connects
Logical, when the first gate 6 is closed, the liquid 4,5 of two fluid reservoirs 2,3 separates.The upper end of two fluid reservoirs 2,3 is open.In height
The upper end open-mouth of liquid level fluid reservoir 2 is provided with the second gate 7., can be by the upper of high level fluid reservoir 2 when the second gate 7 is closed
The open closing in end.
Buoyancy tank 8 is provided with airtight chamber 1.Buoyancy tank 8 is provided with air bleeding valve 12 and liquid feed valve 13, when air bleeding valve 12 and liquid feed valve
13 are in open mode, and when buoyancy tank 8 is fallen in the liquid 5 in low liquid level fluid reservoir 3, liquid can enter via liquid feed valve 13
Buoyancy tank 8.The bottom of low liquid level fluid reservoir 3 can be sunk to by being inoculated with the buoyancy tank 8 of liquid.Air bleeding valve 12 and liquid feed valve 13 can use existing
The mechanical touching formula valve having, or electric-controlled type valve.If, can be in low liquid level fluid reservoir 3 using mechanical touching formula valve
Bottom be provided for touch valve projection.After buoyancy tank 8 sinks to the bottom of low liquid level fluid reservoir 3, the projection just with
Air bleeding valve 12 and liquid feed valve 13 touch, so that air bleeding valve 12 and liquid feed valve 13 are opened.When air bleeding valve 12 and liquid feed valve 13 with
Moving for buoyancy tank 8 and after leaving projection, air bleeding valve 12 and liquid feed valve 13 are closed automatically in the presence of therein spring.If
Air bleeding valve 12 and liquid feed valve 13 use electric-controlled type valve, then the position of buoyancy tank 8 can be monitored using position sensor, works as buoyancy tank
After 8 sink to the bottom of low liquid level fluid reservoir 3, control air bleeding valve 12 and liquid feed valve 13 to open by electric signal, when buoyancy tank 8 leave it is low
After liquid level fluid reservoir 3, air bleeding valve 12 and liquid feed valve 13 is controlled to close by electric signal.
The first travel mechanism 14 is provided with the bottom of low liquid level fluid reservoir 3, is sunk to by the undertaking of the first travel mechanism 14 low
The buoyancy tank 8 of the bottom of liquid level fluid reservoir 3, and drive buoyancy tank 8 to move by the first travel mechanism 14, make buoyancy tank 8 through opening the
One gate 6 is moved to the bottom of high level fluid reservoir 2.First travel mechanism 14 can use but be not limited to leading screw and nut mechanism or
Person's pinion and rack.
The air inlet pipe 17 docked with buoyancy tank 8 and discharging tube 18 are provided with the bottom of high level fluid reservoir 2.Air inlet pipe 17 and row
One end docked with buoyancy tank 8 of liquid pipe 18 is connected to self-sealing pipe joint 19,20.The other end of air inlet pipe 17 is communicated to
Gassiness position in airtight chamber 1.The other end of discharging tube 18 is communicated to low liquid level fluid reservoir 3.In discharging tube 18
It is in series with infusion pump 21.Two self-sealing pipe joints 15,16 are connected with buoyancy tank 8.The self-sealing pipe joint can be with
Using commercially available finished product, or using and 13 mutually isostructural valve of the air bleeding valve 12 on buoyancy tank 8 and liquid feed valve, with Mechanical course or
The mode of person's electric signal control carrys out the closing and unlatching of control joint.
Pipeline docking mechanism 22 is provided with the bottom of high level fluid reservoir 2.Pipeline docking mechanism 22 and air inlet pipe 17 and row
The self-sealing pipe joint 19,20 of liquid pipe 18 connects.The self-styled of air inlet pipe 17 and discharging tube 18 is driven by pipeline docking mechanism 22
Formula pipe joint 19,20 is moved, make two of the self-sealing pipe joint 19,20 of air inlet pipe 17 and discharging tube 18 and buoyancy tank 8 from
Envelope formula pipe joint 15,16 is docked and separation.Pipeline docking mechanism 22 can use but be not limited to leading screw and nut mechanism or tooth
Take turns rackwork.
The second travel mechanism 23 and derricking gear 24, the second travel mechanism 23 and derricking gear are provided with airtight chamber 1
24 connections, the second travel mechanism 23 can drive derricking gear 24 to travel to and fro between top and the low liquid level fluid reservoir 3 of high level fluid reservoir 2
Top, the lifting rope of derricking gear 24 is connected with the hanging mechanisms 25 that can lift buoyancy tank 8.Second travel mechanism 23 can use but
It is not limited to leading screw and nut mechanism or pinion and rack.Derricking gear 24 can use but be not limited to hoist engine.Second movement
Mechanism 23 can also be combined into a kind of combined member, such as manipulator with derricking gear 24, hanging mechanisms 25.Hanging mechanisms 25 can
Using but be not limited to electromagnet.If buoyancy tank 8 does not have magnetic conductivity, can on buoyancy tank 8 magnetic conductor such as fixed iron piece.
The chain sprocket mechanism being made up of chain 9 and sprocket wheel 10 is provided with high level fluid reservoir 2, chain 9 is provided with traction
Portion 26.During buoyancy tank 8 floats to liquid level from the bottom of high level fluid reservoir 2, buoyancy tank 8 can withstand tractive unit 26 upwards,
So as to pull chain 9 by tractive unit 26, rotated by chain 9 with movable sprocket 10.One of sprocket wheel 10 and a water pump vane
29 rotating shaft 11 connects, and the rotating shaft 11 for driving water pump vane 29 by sprocket wheel 10 rotates.Can also be more in chain sprocket mechanism
Individual sprocket wheel 10 connects the rotating shaft of more water pump vanes respectively, while driving plurality water pump vane rotates.High liquid is passed through in rotating shaft 11
The position of position fluid reservoir 2 and airtight chamber 1 should set axle envelope, be sealed with avoiding damage to high level fluid reservoir 2 and airtight chamber 1
Property.
The operation principle of this water plug is elaborated below in conjunction with the accompanying drawings.As shown in Fig. 2 will by derricking gear 24
Buoyancy tank 8 is hung in the liquid 5 in low liquid level fluid reservoir 3.Before buoyancy tank 8 enters liquid, the He of air bleeding valve 12 of buoyancy tank 8 is first opened
Liquid feed valve 13.After buoyancy tank 8 falls into liquid, liquid 5 enters buoyancy tank 8 by liquid feed valve 13, buoyancy tank 8 is filled liquid.Fill liquid
The buoyancy tank 8 of body sinks to the bottom of low liquid level fluid reservoir 3, and is accepted by the first travel mechanism 14.Then as shown in figure 3,
Second gate 7 opens the first gate 6 in the state of closing, and drives buoyancy tank 8 to move by the first travel mechanism 14, moves buoyancy tank 8
To the bottom of high level fluid reservoir 2.Then as shown in Fig. 4 to Fig. 5, in the state of the closing of the first gate 6, by pipeline docking machine
Structure 22 drives two self-sealing pipe joints of the self-sealing pipe joint 19,20 of air inlet pipe 17 and discharging tube 18 towards buoyancy tank 8
15th, 16 movement, connects the self-sealing pipe joint 19,20 of air inlet pipe 17 and discharging tube 18 and two self-sealing pipelines of buoyancy tank 8
First 15,16 docking.Then as shown in fig. 6, opening infusion pump 21, the liquid in buoyancy tank 8 is drawn back to low liquid level fluid reservoir 3, together
Gas in seasonal airtight chamber 1 enters buoyancy tank 8.After the Liquid extracting in buoyancy tank 8, infusion pump 21 is closed, by pipeline
Docking mechanism 22 drives the self-sealing pipe joint 19,20 of air inlet pipe 17 and discharging tube 18 movement to reset, and makes air inlet pipe 17 and row
The self-sealing pipe joint 19,20 of liquid pipe 18 separates with two self-sealing pipe joints 15,16 of buoyancy tank 8.Then such as Fig. 7 institutes
Show, buoyancy tank 8 liquid buoyancy float downward to liquid level.During buoyancy tank 8 floats, buoyancy tank 8 withstands tractive unit upwards
26, chain 9 is pulled by tractive unit 26, then rotated by chain 9 with movable sprocket 10, water pump vane 29 is finally driven by sprocket wheel 10
Rotating shaft 11 rotates, and realizes pumping function.While buoyancy tank 8 floats, or after buoyancy tank 8 floats to liquid level, the second lock is opened
Door 7.Then as shown in Fig. 7 to Fig. 8, derricking gear 24 is driven to be moved to the upper of high level fluid reservoir 2 by the second travel mechanism 23
Side, derricking gear 24 are lifted buoyancy tank 8 using lifting rope and hanging mechanisms 25.Then as shown in figure 9, by the band of the second travel mechanism 23
Dynamic derricking gear 24 is moved to the top of low liquid level fluid reservoir 3.Then as shown in Fig. 2 again being hung buoyancy tank 8 by derricking gear 24
Enter in the liquid 5 in low liquid level fluid reservoir 3.Hereafter continuous circulating repetition said process, make buoyancy tank 8 two fluid reservoirs 2,3 it
Between shuttling movement, so as to drive the rotating shaft 11 of water pump vane 29 intermittently to rotate., can in order to realize the continuous rotation of rotating shaft 11
The Flywheel in rotating shaft 11, rotating shaft 11 is made persistently to rotate using the inertia of flywheel.
As a kind of embodiment, need not can also connect infusion pump 21 in discharging tube 18, but in high level liquid storage
The bottom of room 2 sets elevating mechanism, and elevating mechanism can elevate buoyancy tank 8 liquid level in higher than low liquid level fluid reservoir 3.This
Sample, in the case of no infusion pump 21, also the liquid in buoyancy tank 8 can be made to flow back to low liquid level fluid reservoir 3 by Action of Gravity Field.Rise
Descending mechanism can use but be not limited to leading screw and nut mechanism or pinion and rack.
As preferred forms, buoyancy tank locking mechanism can be set in the bottom of high level fluid reservoir 2, when buoyancy tank 8 is with entering
When tracheae 17 and discharging tube 18 dock, buoyancy tank locking mechanism fixes buoyancy tank 8, is finished when the liquid in buoyancy tank 8 flows out, and
And after buoyancy tank 8 separates with air inlet pipe 17 and discharging tube 18, buoyancy tank locking mechanism release buoyancy tank 8.Buoyancy tank locking mechanism can use
But it is not limited to electromagnet.If buoyancy tank 8 does not have magnetic conductivity, can on buoyancy tank 8 magnetic conductor such as fixed iron piece.
In order to allow tractive unit 26 to return to the bottom of high level fluid reservoir 2, as shown in figure 1, connecting in the end of chain 9
It is connected to counterweight 27.After buoyancy tank 8 leaves high level fluid reservoir 2 as shown in Figure 9, chain 9 is pulled by counterweight 27, makes tractive unit 26
Return to the bottom of high level fluid reservoir 2.
Chain sprocket mechanism can also use the structure of the chain circulation walking shown in Figure 10, be connected on chain 9 multiple
Tractive unit 26.When one of tractive unit 26 is pushed up to top by buoyancy tank 8, another tractive unit 26 is located just at high level liquid storage
The bottom of room 2, to meet the arrival of buoyancy tank to be next time ready.
, can be in the rotating shaft 11 of water pump vane 29 and sprocket wheel in order to allow the rotating shaft 11 of water pump vane 29 only to be rotated towards single direction
Unilateral bearing is installed between 10.Only when the buoyancy tank 8 that chain 9 is floated upwards pulls, sprocket wheel 10 just drives water pump vane 29
Rotating shaft 11 rotate, when chain 9 moves in the opposite direction, sprocket wheel 10 dallies in the rotating shaft 11 of water pump vane 29.
The rotating shaft 11 of water pump vane 29 can be connected directly between on sprocket wheel 10, can also water pump vane 29 rotating shaft 11 with
Connection gear gear between sprocket wheel 10, sprocket wheel 10 drive the rotating shaft 11 of water pump vane 29 to rotate by gear shift.
In order to ensure that buoyancy tank can be accurate to up to precalculated position in lifting process, buoyancy tank can be constrained using guide rail
Movement locus.Figure 11 is a kind of embodiment that buoyancy tank coordinates with guide rail.In terms of the overlook direction of buoyancy tank 8, four angle bands of buoyancy tank 8
There is recess, four guide rails 28 in four recesses, play a part of constraining the movement locus of buoyancy tank 8 respectively.The rail seen in figure
Road 28 is the cross section of track.
Embodiment described above only expresses the several embodiments of the present invention, and its description is more specific and detailed, but simultaneously
Can not therefore it be construed as limiting the scope of the patent.For the person of ordinary skill of the art, this is not being departed from
On the premise of inventive concept, various modifications and improvements can be made, these belong to protection scope of the present invention.It is of the invention special
The protection domain of profit should be determined by the appended claims.
Claims (6)
1. using the water plug of floatage-type power set, including the power dress that water pump vane and driving water pump vane rotate
Put, it is characterised in that the power set are provided with:
The airtight chamber of gas is remained with to outer closure and the inside, two are provided with airtight chamber and deposits the liquid storage for having liquid
Room, two fluid reservoirs are respectively high level fluid reservoir and low liquid level fluid reservoir, and the liquid level in high level fluid reservoir is higher than low
Liquid level in liquid level fluid reservoir;
In the bottom of two fluid reservoirs, the first gate is provided between two fluid reservoirs, when the first gate is opened, two storages
The fluid connection of liquid room, when the first closing gate, the liquid cut-off of two fluid reservoirs;
The upper end of two fluid reservoirs is open, and the second gate is provided with the upper end open-mouth of high level fluid reservoir, when the second gate closes
Can be by the open closing in the upper end of high level fluid reservoir when closing;
Buoyancy tank is provided with airtight chamber, buoyancy tank is provided with air bleeding valve and liquid feed valve, when the air bleeding valve and liquid feed valve are in open shape
State, and when buoyancy tank is fallen in the liquid in low liquid level fluid reservoir, liquid can enter buoyancy tank via the liquid feed valve, be inoculated with liquid
Buoyancy tank can sink to the bottom of low liquid level fluid reservoir;
The first travel mechanism is provided with the bottom of low liquid level fluid reservoir, is accepted by the first travel mechanism and sinks to low liquid level fluid reservoir
The buoyancy tank of bottom, and buoyancy tank movement is driven by the first travel mechanism, buoyancy tank is moved to high liquid by the first gate opened
The bottom of position fluid reservoir;
Be provided with the air inlet pipe docked with buoyancy tank and discharging tube in the bottom of high level fluid reservoir, air inlet pipe and discharging tube and buoyancy tank
One end of docking is connected with self-sealing pipe joint, and the other end of air inlet pipe is communicated to the gassiness portion in airtight chamber
Position, the other end of discharging tube are communicated to low liquid level fluid reservoir, two self-sealing pipe joints are connected with buoyancy tank, in high level
The bottom of fluid reservoir is provided with pipeline docking mechanism, and the self-sealing pipe joint of pipeline docking mechanism and air inlet pipe and discharging tube connects
Connect, drive the self-sealing pipe joint of air inlet pipe and discharging tube to move by pipeline docking mechanism, make oneself of air inlet pipe and discharging tube
The pipe joint of envelope formula is docked and separated with two self-sealing pipe joints of buoyancy tank;
The second travel mechanism and derricking gear are provided with airtight chamber, the second travel mechanism is connected with derricking gear, and second moves
Motivation structure can drive derricking gear to travel to and fro between the top of high level fluid reservoir and the top of low liquid level fluid reservoir, derricking gear connection
The hanging mechanisms of buoyancy tank can be lifted by having;
Chain sprocket mechanism is provided with high level fluid reservoir, chain is provided with tractive unit, in buoyancy tank from the bottom of high level fluid reservoir
During portion floats to liquid level, buoyancy tank withstands tractive unit upwards, so as to pull chain by tractive unit, by chain-driving sprocket wheel
Rotate;
At least one sprocket wheel is connected with the rotating shaft of a water pump vane in chain sprocket mechanism, by chain wheel drive water pump vane
Axis of rotation.
2. the water plug of floatage-type power set is used as claimed in claim 1, it is characterized in that:In the high level liquid storage
The bottom of room is provided with buoyancy tank locking mechanism, and the buoyancy tank can be fixed and discharged to buoyancy tank locking mechanism.
3. the water plug of floatage-type power set is used as claimed in claim 2, it is characterized in that:The buoyancy tank locking mechanism
It is electromagnet.
4. the water plug of floatage-type power set is used as claimed in claim 1, it is characterized in that:The hanging mechanisms are electricity
Magnet.
5. the water plug of floatage-type power set is used as claimed in claim 1, it is characterized in that:The discharging tube is in series with
Infusion pump.
6. the water plug of floatage-type power set is used as claimed in claim 1, it is characterized in that:In the high level liquid storage
The bottom of room is provided with elevating mechanism, and the liquid level that elevating mechanism can elevate the buoyancy tank in higher than the low liquid level fluid reservoir is high
Degree.
Priority Applications (1)
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CN201710774850.0A CN107762859A (en) | 2017-08-31 | 2017-08-31 | Using the water plug of floatage-type power set |
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Application Number | Priority Date | Filing Date | Title |
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CN201710774850.0A CN107762859A (en) | 2017-08-31 | 2017-08-31 | Using the water plug of floatage-type power set |
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Family
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Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR2291373A1 (en) * | 1974-06-06 | 1976-06-11 | Germaine Pierre | Machine deriving energy from water pressure - has wheels driven by belts carrying weights and air bags |
FR2480861A1 (en) * | 1980-04-17 | 1981-10-23 | Voisin Marcel | Continuous water energy converter - uses chain of spherical floats passing over wheels above and below water to convert vertical float chain movement to rotation |
CN1080365A (en) * | 1992-04-02 | 1994-01-05 | 刘继仁 | Buoyancy machine or engine |
CN1124822A (en) * | 1995-08-22 | 1996-06-19 | 张长灵 | Buoyancy engine |
CN1239187A (en) * | 1998-07-14 | 1999-12-22 | 郑彦成 | Floatage-gravity perpetual motion machine |
-
2017
- 2017-08-31 CN CN201710774850.0A patent/CN107762859A/en active Pending
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR2291373A1 (en) * | 1974-06-06 | 1976-06-11 | Germaine Pierre | Machine deriving energy from water pressure - has wheels driven by belts carrying weights and air bags |
FR2480861A1 (en) * | 1980-04-17 | 1981-10-23 | Voisin Marcel | Continuous water energy converter - uses chain of spherical floats passing over wheels above and below water to convert vertical float chain movement to rotation |
CN1080365A (en) * | 1992-04-02 | 1994-01-05 | 刘继仁 | Buoyancy machine or engine |
CN1124822A (en) * | 1995-08-22 | 1996-06-19 | 张长灵 | Buoyancy engine |
CN1239187A (en) * | 1998-07-14 | 1999-12-22 | 郑彦成 | Floatage-gravity perpetual motion machine |
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