CN202334246U - Magnetofluid generation device - Google Patents
- ️Wed Jul 11 2012
CN202334246U - Magnetofluid generation device - Google Patents
Magnetofluid generation device Download PDFInfo
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Publication number
- CN202334246U CN202334246U CN2011204325220U CN201120432522U CN202334246U CN 202334246 U CN202334246 U CN 202334246U CN 2011204325220 U CN2011204325220 U CN 2011204325220U CN 201120432522 U CN201120432522 U CN 201120432522U CN 202334246 U CN202334246 U CN 202334246U Authority
- CN
- China Prior art keywords
- magnetic fluid
- coil windings
- magnetofluid
- group
- coils Prior art date
- 2011-11-04 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.)
- Expired - Fee Related
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Abstract
The utility model provides a magnetofluid generation device and relates to the field of power generation. The magnetofluid generation device comprises a magnetofluid, a No.1 magnetofluid storage tank, a No.2 magnetofluid storage tank, a magnetofluid inlet pipeline, a magnetofluid outlet pipeline, coil windings, a guiding magnetic power supply coil winding, a magnetofluid pump and the like. The magnetofluid with a magnetic field in the No.1 magnetofluid storage tank and the No.2 magnetofluid storage tank is continuously circulated through the magnetofluid inlet pipeline and the magnetofluid outlet pipeline under the action of the magnetofluid pump, and thus the coil windings which are respectively mounted on the inlet pipeline and the outlet pipeline continuously generate current and the aim of generating power is achieved. The magnetofluid generation device has the advantages of low power generation cost, no pollution or limitation on natural conditions and the like. The magnetofluid generation device is suitable for power generation in the industries such as manufacture, agriculture, national defense, science and technology and the like.
Description
Technical field
The utility model provides a kind of hydromagnetic generating device, relates to power field.
Background technology
Electric energy is one of topmost energy of modern society, and generator is the plant equipment that other forms of energy conversion is become electric energy, and generator is in industrial and agricultural production, and national defence has been widely used in science and technology and the daily life.Along with the fast development of modern economy, human demand for electricity increases rapidly, and the generation current machine is usually by stator, rotor, end cap. and parts such as brush, support and bearing constitute.Stator is made up of other structural members that support, stator core, line hold group and fixing these parts.Rotor is made up of parts such as rotor core, rotor magnetic pole, slip ring, fan and rotating shafts.Through bearing, support and the end cap stator with generator, rotor assembles, and rotor can be rotated in stator; Feed certain exciting current through slip ring, make rotor become a rotating magnetic field, stator coil is done the motion of cutting magnetic line; Thereby generation induced potential; Draw through binding post, be connected in the loop, just produced electric current.The electric energy that adopts the mechanical type running to be produced, not only transformation efficiency is low, and has increased cost of electricity-generating.Therefore, for realizing sustainable development, develop new generation technology to be future source of energy development important topic.
Summary of the invention
By solving the electric energy that generation technology at present commonly used institute employing mechanical type turns round and produced, not only transformation efficiency is low, and has increased the cost of electricity-generating problem.The utility model provides a kind of hydromagnetic generating device, by magnetic fluid, and 1, No. 2 magnetic fluid holding vessel, magnetic fluid import and export pipeline, coil windings, guiding magnetoelectricity source coil winding, equipment such as magnetic fluid pump are formed.Through the magnetic fluid pump magnetic fluid in the import and export pipeline is flowed, in pipeline, produce magnetic field, thereby make the coil windings that is installed on the import and export pipeline produce electric current.
The utility model solves the technical scheme that its technical problem adopted.Hydromagnetic generating device by figure in, No. 1 magnetic fluid holding vessel, No. 1 magnetic fluid holding vessel magnetic fluid, No. 1 magnetic fluid holding vessel inlet valve; The magnetic fluid outlet conduit, the Line 1 circle of A group coil windings, No. 2 coils of A group coil windings, magnetic fluid outlet conduit guiding magnetoelectricity source coil winding Line 1 circle; No. 2 coils of magnetic fluid outlet conduit guiding magnetoelectricity source coil winding, the Line 1 circle of B group coil windings, No. 2 coils of B group coil windings, No. 2 magnetic fluid holding vessel outlet valves; No. 2 magnetic fluid holding vessel magnetic fluids, No. 2 magnetic fluid holding vessels, No. 2 magnetic fluid holding vessel inlet valves; The Line 1 circle of C group coil windings, No. 2 coils of C group coil windings, magnetic fluid inlet pipeline guiding magnetoelectricity source coil winding Line 1 circle; No. 2 coils of magnetic fluid inlet pipeline guiding magnetoelectricity source coil winding, the Line 1 circle of D group coil windings, No. 2 coils of D group coil windings; The magnetic fluid inlet pipeline, magnetic fluid pump, No. 1 composition such as magnetic fluid holding vessel outlet valve.
No. 1 magnetic fluid holding vessel and No. 2 magnetic fluid holding vessels are respectively applied for the storage magnetic fluid, and No. 2 magnetic fluid holding vessels are higher than No. 1 magnetic fluid holding vessel makes it to form drop.No. 1 the magnetic fluid holding vessel is connected through magnetic fluid import and export pipeline respectively with No. 2 magnetic fluid holding vessels.Magnetic fluid inlet pipeline one end connects the magnetic fluid pump; The other end connects No. 2 magnetic fluid holding vessel inlet valves, and the Line 1 circle of C group coil windings is installed on the pipeline, No. 2 coils of C group coil windings; The Line 1 circle of D group coil windings; No. 2 coils of D group coil windings, the centre of C group and D group coil windings are equipped with magnetic fluid inlet pipeline guiding magnetoelectricity source coil winding Line 1 circle, No. 2 coils of magnetic fluid inlet pipeline guiding magnetoelectricity source coil winding.Many group coil windings and outlet conduit guiding magnetoelectricity source coil winding are installed on the magnetic fluid outlet conduit; Wherein A organizes the Line 1 circle of coil windings; No. 2 coils of A group coil windings, the Line 1 circle of B group coil windings, No. 2 coils of B group coil windings; The centre of A group and B coil windings is equipped with magnetic fluid outlet conduit guiding magnetoelectricity source coil winding Line 1 circle, No. 2 coils of magnetic fluid outlet conduit guiding magnetoelectricity source coil winding.
The magnetic fluid pump is with the magnetic fluid suction inlet pipeline in No. 1 magnetic fluid holding vessel, and magnetic fluid flows in pipeline, flows into No. 2 the magnetic fluid holding vessel.In order to make the magnetic fluid in the pipeline when mobile, produce magnetic field; The magnetic fluid inlet pipeline guiding magnetoelectricity source coil winding of in the middle of C group and D group coil windings, installing is connected DC power supply; The size of power supply is controlled according to magnetic fluid flow velocity, concentration; Make it and to flow fast, bigger magnetic field is arranged again.When having the magnetic fluid process magnetic fluid inlet pipeline in magnetic field, be installed in the Line 1 circle of C group coil windings on the magnetic fluid inlet pipeline and No. 2 coils of C group coil windings and form loops generation electric currents; No. 2 coils of D group coil windings Line 1 circle and D group coil windings form the loop and produce electric current.Because No. 2 magnetic fluid holding vessels are higher than No. 1 magnetic fluid holding vessel and have formed drop, No. 2 the interior magnetic fluid of magnetic fluid holding vessel flows into the magnetic fluid holding vessel No. 1 naturally through the magnetic current outlet conduit.According to the height of drop with to power requirement, the group number of coil windings and outlet conduit guiding magnetoelectricity source coil winding is installed on the magnetic fluid outlet conduit.In order to make the magnetic fluid in the pipeline when mobile, produce magnetic field; The magnetic fluid inlet pipeline guiding magnetoelectricity source coil winding of in the middle of each group coil windings, installing is connected DC power supply; The size of power supply is controlled according to magnetic fluid flow velocity, concentration; Make it and to flow fast, bigger magnetic field is arranged again.When having the magnetic fluid process magnetic fluid outlet conduit in magnetic field, the coil windings of respectively organizing that is installed on the magnetic fluid outlet conduit forms loop generation electric current.Wherein No. 2 coils of the Line 1 circle of A group coil windings and A group coil windings form the loop and produce electric current, and No. 2 coils of the Line 1 circle of B group coil windings and B group coil windings form the loop and produce electric current.No. 1 magnetic fluid holding vessel and No. 2 interior magnetic fluids of magnetic fluid holding vessel; Under the effect of magnetic fluid pump; Through magnetic fluid import and export pipeline the magnetic fluid that has magnetic field is constantly circulated, thereby make the coil windings of installing on the import and export pipeline constantly produce electric current, reach the purpose of generating.
The beneficial effect of the utility model is.Hydromagnetic generating device has the advantages such as restriction that cost of electricity-generating is low, pollution-free, do not receive natural conditions.Be applicable to industry, agricultural, national defence, science and technology, etc. the industry generating.
Description of drawings
The utility model is further specified with embodiment below in conjunction with Figure of description 1.
Fig. 1 is the structural map of the utility model embodiment.
Among the figure, 1, No. 1 magnetic fluid holding vessel, 2, No. 1 magnetic fluid holding vessel magnetic fluids; 3, No. 1 magnetic fluid holding vessel inlet valve, 4, the magnetic fluid outlet conduit, 5, the Line 1 circle of A group coil windings; 6, No. 2 coils of A group coil windings, 7, magnetic fluid outlet conduit guiding magnetoelectricity source coil winding Line 1 circle, 8, No. 2 coils of magnetic fluid outlet conduit guiding magnetoelectricity source coil winding; 9, the Line 1 circle of B group coil windings, 10, No. 2 coils of B group coil windings, 11, No. 2 magnetic fluid holding vessel outlet valves; 12, No. 2 magnetic fluid holding vessel magnetic fluids, 13, No. 2 magnetic fluid holding vessels, 14, No. 2 magnetic fluid holding vessel inlet valves; 15, the Line 1 circle of C group coil windings, 16, No. 2 coils of C group coil windings, 17, magnetic fluid inlet pipeline guiding magnetoelectricity source coil winding Line 1 circle; 18, No. 2 coils of magnetic fluid inlet pipeline guiding magnetoelectricity source coil winding, 19, the Line 1 circle of D group coil windings, 20, No. 2 coils of D group coil windings; 21, magnetic fluid inlet pipeline, 22, the magnetic fluid pump, 23, No. 1 magnetic fluid holding vessel outlet valves.
Embodiment
In the embodiment shown in fig. 1, No. 1 magnetic fluid holding vessel inlet valve (3) and No. 1 magnetic fluid holding vessel outlet valve (23) are installed on No. 1 magnetic fluid holding vessel (1), in jar No. 1 magnetic fluid holding vessel magnetic fluid (2) are arranged.No. 2 magnetic fluid holding vessel inlet valves (14) and No. 2 magnetic fluid holding vessel outlet valves (11) are installed on No. 2 magnetic fluid holding vessels (13), in jar No. 2 magnetic fluid holding vessel magnetic fluids (12) are arranged.Magnetic fluid pump (22) is connected with No. 1 magnetic fluid holding vessel (1) through No. 1 magnetic fluid holding vessel inlet valve (3) and is used to extract magnetic fluid.Magnetic fluid inlet pipeline (21) one ends connect magnetic fluid pump (22); The other end connects No. 2 magnetic fluid holding vessel inlet valves (14); The Line 1 circle (15) of C group coil windings is installed on the pipeline; No. 2 coils (16) of C group coil windings, the Line 1 circle (19) of D group coil windings, No. 2 coils (20) of D group coil windings; The centre of C group and D group coil windings is equipped with magnetic fluid inlet pipeline guiding magnetoelectricity source coil winding Line 1 circle (17), magnetic fluid inlet pipeline guiding magnetoelectricity source coil No. 2 coils of winding (18).Many group coil windings and outlet conduit guiding magnetoelectricity source coil winding are installed on the magnetic fluid outlet conduit (4); Wherein A organizes the Line 1 circle (5) of coil windings; No. 2 coils (6) of A group coil windings, the Line 1 circle (9) of B group coil windings, No. 2 coils (10) of B group coil windings; The centre of A group and B coil windings is equipped with magnetic fluid outlet conduit guiding magnetoelectricity source coil winding Line 1 circle (7), magnetic fluid outlet conduit guiding magnetoelectricity source coil No. 2 coils of winding (8).
Claims (5)
1. hydromagnetic generating device; Be provided with No. 1 magnetic fluid holding vessel and No. 2 magnetic fluid holding vessels and be respectively applied for the storage magnetic fluid; No. 2 magnetic fluid holding vessels are higher than No. 1 magnetic fluid holding vessel makes it to form drop, and No. 1 the magnetic fluid holding vessel is connected through magnetic fluid import and export pipeline respectively with No. 2 magnetic fluid holding vessels.
2. hydromagnetic generating device according to claim 1; It is characterized in that: magnetic fluid inlet pipeline one end connects the magnetic fluid pump; The other end connects No. 2 magnetic fluid holding vessel inlet valves, and the Line 1 circle of C group coil windings is installed on the pipeline, No. 2 coils of C group coil windings; The Line 1 circle of D group coil windings; No. 2 coils of D group coil windings, the centre of C group and D group coil windings are equipped with magnetic fluid inlet pipeline guiding magnetoelectricity source coil winding Line 1 circle, No. 2 coils of magnetic fluid inlet pipeline guiding magnetoelectricity source coil winding.
3. hydromagnetic generating device according to claim 1; It is characterized in that: many group coil windings and outlet conduit guiding magnetoelectricity source coil winding are installed on the magnetic fluid outlet conduit; Wherein A organizes the Line 1 circle of coil windings; No. 2 coils of A group coil windings, the Line 1 circle of B group coil windings, No. 2 coils of B group coil windings; The centre of A group and B coil windings is equipped with magnetic fluid outlet conduit guiding magnetoelectricity source coil winding Line 1 circle, No. 2 coils of magnetic fluid outlet conduit guiding magnetoelectricity source coil winding.
4. hydromagnetic generating device according to claim 1; It is characterized in that: the middle guiding magnetoelectricity source coil winding of installing of respectively organizing coil windings on the magnetic fluid import and export pipeline is connected DC power supply, and the size of power supply is controlled according to magnetic fluid flow velocity, concentration.
5. hydromagnetic generating device according to claim 1 is characterized in that: the group number of coil windings and outlet conduit guiding magnetoelectricity source coil winding is installed on the magnetic fluid outlet conduit, is set according to the height of drop with to power requirement.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011204325220U CN202334246U (en) | 2011-11-04 | 2011-11-04 | Magnetofluid generation device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011204325220U CN202334246U (en) | 2011-11-04 | 2011-11-04 | Magnetofluid generation device |
Publications (1)
Publication Number | Publication Date |
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CN202334246U true CN202334246U (en) | 2012-07-11 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN2011204325220U Expired - Fee Related CN202334246U (en) | 2011-11-04 | 2011-11-04 | Magnetofluid generation device |
Country Status (1)
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CN (1) | CN202334246U (en) |
Cited By (1)
* Cited by examiner, † Cited by third partyPublication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103607094A (en) * | 2013-12-11 | 2014-02-26 | 魏伯卿 | Positive and negative charge-shunted trapping tunnel for magnetofluid generator |
-
2011
- 2011-11-04 CN CN2011204325220U patent/CN202334246U/en not_active Expired - Fee Related
Cited By (1)
* Cited by examiner, † Cited by third partyPublication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103607094A (en) * | 2013-12-11 | 2014-02-26 | 魏伯卿 | Positive and negative charge-shunted trapping tunnel for magnetofluid generator |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
2012-07-11 | C14 | Grant of patent or utility model | |
2012-07-11 | GR01 | Patent grant | |
2013-12-25 | C17 | Cessation of patent right | |
2013-12-25 | CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20120711 Termination date: 20121104 |