CN111852779A - Typhoon generator set - Google Patents

Typhoon generator set Download PDF

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Publication number
CN111852779A
CN111852779A CN202010741808.0A CN202010741808A CN111852779A CN 111852779 A CN111852779 A CN 111852779A CN 202010741808 A CN202010741808 A CN 202010741808A CN 111852779 A CN111852779 A CN 111852779A
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motor
pulley
layer
magnets
double
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CN202010741808.0A
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李维斌
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Individual
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction

Abstract

The invention discloses a typhoon generator set which comprises hollow fan blades in cylindrical fan blades capable of resisting typhoons, wherein the upper fan blade and the lower fan blade synchronously rotate, a synchronous pulley, a gear, a transmission shaft, a phase-changing gear and a turbine shaft are arranged in the hollow fan blades, the tower crane is a double-layer generator integrated with a whole, a water channel and the tower crane are arranged outside a motor, coils and magnets are arranged on the inner layer and the outer layer of the motor, an automatic adjustable change gear box is arranged at the front end of the motor, and a transformer is arranged in the tower crane when the motor is disconnected. The double-layer generator can be used in other fields of power generation or double-layer motor, and is characterized in that the generated energy is continuously improved or the single drive is replaced to enter an integrated double-drive or multi-drive era.

Description

Typhoon generator set
Technical Field
The invention belongs to the field of motors, and particularly relates to a typhoon generator set.
Technical Field
The common generator set is troublesome to install, the motor and the blades are hung in the air, the wind power cannot be installed when the wind power is too large, the power generation capacity of the wind power generator is limited only by installing one motor, the wind power generator wastes the wind, the vegetation damage caused by installation is large, the wind power generator used on the sea is large, the wind power amount is larger than that of the original wind power generator, the wind speed of typhoon exceeds 13-15 levels, the generator is closed, the typhoon cannot generate electricity through the tower-based generator, the blades of the typhoon can be damaged more or less, and the typhoon cannot randomly walk a route to be fixed.
Whether a marine generator, a land generator, a nuclear power station, a thermal power station, a hydropower station, a Chinese whole-system battleship and the like are the same in technology, the generator and the motor are manufactured at one time, and the generated energy is dead and cannot be changed.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides a typhoon generator set,
the typhoon generator is a double-layer motor, an alternating current motor and an automatic adjustable independent rotating gearbox, and is a general name of a typhoon generator set which is used by mutually matching all used components.
The typhoon is divided into offshore, open sea and land typhoons and also divided into windward wind and rotating wind, the typhoon is characterized by large, fast, violent and pulling force in wind power, firstly, fan blades are started from the fan blades, the cylindrical fan blades solve the problem that the typhoon passes through the tower foundation body, the rotating typhoon can pull up the circular fan blades, the fan blades can be closed into the tower foundation, the typhoon comes to remove the gravity inertia of the fan blades to automatically drop and recover to the original shape, the fan blades can be kept to solve the rotating wind, and the windward wind is a wind driven generator by changing the fan head and the gearbox under the condition that the tower foundation is not changed.
The gearbox is designed according to a double-layer motor or a single-layer motor, and is divided into an automatic adjustable independent rotating gearbox and a common gearbox, the typhoon wind can be small, the automatic adjustable independent rotating gearbox can adjust the number of layers of a generator according to the size of the typhoon, or the gearbox is used for the double-layer motor and cannot adjust the number of layers independently, the number of adjustable layers or the number of layers cannot be adjusted is synchronous with the number of layers of the generator, the use environment and the double-layer motor or two layers of asynchronous rotation, and the problem that heat dissipation is needed to be considered when the number of layers exceeds two layers is solved, after all, seawater can only dissipate heat of the outmost motor, the automatic adjustable independent rotating gearbox can adjust the internal temperature of the speed control of the double-layer motor according to the temperature, (namely, the gearbox.
The number of layers of the double-layer motor is unlimited, the double-layer motor and the double-layer alternating-current motor are divided into an interlayer, the double-layer motor and the double-layer alternating-current motor are also divided into a plurality of layers of synchronous equidirectional rotation and a plurality of layers of reverse rotation motors, the alternating-current motor is also called a double-layer alternating-current motor according to the change of a magnetic field and the light-weight design, for example, 10 layers of motors are originally provided with magnets on each layer, the magnets are removed from the outer layer or the inner layer, the outer layer or the inner layer rotates to generate the magnetic field, the second layer rotates reversely for the first time to perform magnetic brush, and the like, the magnets are placed in a T winding groove, copper wires are wound on the copper wires, or the magnets are placed beside the winding groove, namely the rotors and the magnets are combined together, so.
The double-layer electromagnetic motor and the automatic adjustable independent rotating gearbox can be used in other power generation fields, such as national defense, such as nuclear power aircraft carriers, expelling ships, guard ships and the like, and have better power generation use, such as the functions and the wattage of the former generators are dead, can not be changed and can not be recycled, the current warships are advanced compared with the former warships, the power consumption is higher than that of the former warships, so that the warships cannot be used, 2 generators are also considered to be used, but the space of the warships is reduced by half, the space of the warships is more valuable, the double-layer motor can enable the interlayer of the warship generators to be used on other warships after the warship generators are eliminated, so the cost of the generators is low, the double-layer motor can solve the huge energy required by the electromagnetic rail cannon to be taken out of the nuclear reactor at the same time, such as cannonballs need one hundred million degree of electricity, and can provide one hundred million degree of electricity for the electromagnetic, the double-layer motor has the great advantages that the shell can penetrate through the gear box and the generator and can work, because the gear box and the generator are driven independently, the penetration of the outer layers has no influence, the phenomenon that the generator is not hit by the shell in a war cannot be guaranteed, the shell is not long-eyed, the penetration of other generator shells can lead electronic equipment of a warship to be paralyzed, the electromagnetic rail gun ship needs to teach the generator, the outer part can be radiated by water or other liquid, the inner part can be radiated by pressurized wind, the pressurizing mode of an automobile engine is the same as that of a strong wind is that the strong wind is penetrated into the motor for radiating, the warship needs to meet the requirements of light generator, large generating capacity, good radiating, long service life and the like, the characteristics that the weight of carbon fiber is reduced by 40-60 percent on an integrated material can be realized, the weight of 20-30 percent can be reduced by using aluminum alloy, the double-layer generator and motor technology is the same, the heat dissipation of electronic equipment of a whole battleship is also better, for example, 5 electronic equipment and 5 layers are added, so that a lot of places can be saved, the space of the battleship is very precious, no other design is better than that of the battleship, except controllable nuclear fusion, also called artificial sun, no country or person in the world can directly obtain energy in the nature without energy conversion, and the situation cannot be achieved at present.
The world is only required to search huge energy to enable the electromagnetic rail cannon to get on the warship, and only nuclear power can take out huge electric power, and only by the method, the warship is between 2 and 4 ten thousand tons, is the most advanced warship in the world, is also a key for opening future wars, and is different from the situation that a sword exists in a hand and the sword does not exist in a hand. The number of layers of the electromagnetic rail gun can be infinitely increased, and if the design is not believed to prove, the country which is the first country in the world to master the electromagnetic rail gun is the first country in the world to succeed.
The first three solutions are used in the fields of power generation, thermal power and thermal power, nuclear power, hydroelectric power, geothermal power generation, offshore floating nuclear power stations, gas turbines and other power generation and motors, and the last one is used in national defense.
The technical method adopted by the invention for solving the technical problem is as follows: the integrated tower base comprises a cylindrical integrated tower base 1, copper radiating fins 2 are arranged inside the tower base, a water channel 3 is arranged beside the tower base and used for radiating seawater, the copper radiating fins and the water channel are fixed with an aluminum motor shell, magnets 5 are arranged on the left inner side wall and the right inner side wall of the motor, a bearing shaft rotor 6 is arranged in the middle and fixed with a T- shaped winding groove 7, 8 copper wires are wound in the T-shaped winding groove, the whole bearing shaft rotor is coaxial with the magnets and the motor shell, an aluminum motor wall 9 is arranged on the outer ring of the bottom of the motor, a pulley 10 is arranged in the middle, brushes 11 are arranged at the bottom of the pulley, a pulley 10 is arranged at the front section of the motor, two ends of the bearing shaft rotor are sleeved in front and rear pulleys of the motor, a collecting ring 12 extends out from the bottom of the bearing shaft rotor, the collecting ring extends out a wire 13 and is connected with a transformer 13 inside the tower base, a direction-, the hollow pulley 15 of fan head bottom outer lane links to each other with cylindrical integrative tower base that fuses, gear 16 and the hollow pulley of fan head internal rear portion are fixed, it is continuous with the gear of front end that miniature generator 17 is followed, fan head front portion is the pulley 10 of fixed flabellum, carbon fiber or bamboo fibre flabellum 18 is linked fixedly with the direction change acceleration gear case.
The typhoon double-layer generator set comprises a U-row central shaft rotor 19 inside, wherein the central shaft rotor is linked with a plurality of T rows extending out of a perfect circle and linked with the central shaft rotor, 8 copper wires are wound in a plurality of T rows of winding grooves 20, 5 magnets are arranged beside the central shaft rotor, a gap is reserved outside the central shaft rotor, the U-row internal portion extending downwards out of the central shaft rotor and the central shaft rotor on the side are an integral linking mechanism, the internal portion extending downwards out of the central shaft rotor is linked with the central shaft rotor, the 8 copper wires are wound in a plurality of T rows of winding grooves, the magnets are arranged between the external central shaft rotor and the internal T rows of winding grooves, the two sides of the magnets are provided with a gap, the internal inner layer outside the bottom of the motor is a circular hollow pulley 21 beside the motor wall, the circular hollow brush 22 is arranged on the side, the lower side is a circular hollow collecting ring 23, and the circular hollow pulley is fixed with the magnets on the internal side, three fixing plates 24 on the outer side of the bottom of the motor are used for fixing internal magnets, the magnets and the outer side of the bottom of the U are connected and fixed through round hollow pulleys, gaps are reserved between the outer side of the bottom of the U and the three fixing plates, the magnet is fixed with the internal magnets in the bottom of the motor, the pulleys 10 are arranged beside the magnet in the bottom of the motor, the upper part of the magnet is provided with an electric brush 11, the lower part of the magnet is provided with a collecting ring 12, the left side and the right side of a U-shaped center shaft rotor 19 at the front end of the motor are provided with gears 16, the round hollow pulleys 21 are arranged below the motor, an automatic adjustable independent rotating gearbox is arranged in a front-end tower foundation, the pulleys 10 are fixed on the inner wall in the inner part of the automatic adjustable independent rotating gearbox, a turbine shaft 26 is sleeved in the pulleys, the front end of the turbine shaft, the second section of turbine shaft is sleeved in the pulley and penetrates through the pulley and is fixedly connected with a raised gear link and is linked with a second inner layer motor, the gear 16 on the motor is raised through the gear link, the electricity generated by the micro-generator 17 is transmitted and wound on three circles of copper wires 28 through an electric wire 27, a metal block 29 is arranged in the middle of each copper wire and is spaced from a magnet 5 beside each copper wire, the magnet is linked through a round rod 30, the gear link is arranged on the left side of each copper wire and is connected with the turbine shaft, the pulley is arranged in the middle of the inclined gear 25 and the gear and is fixed on the inner wall, the round rod 30 is linked at the rear part of each turbine shaft, a rectangular fixing plate 31 is arranged on the inner wall, a round rod with a small hole at the tail end penetrates through the small hole, a spring 32 is arranged at the tail end of the round rod and is welded with the spring, the small hole 33 is arranged at the tail end of the rectangular fixing plate, the round, the left side is provided with a gear which is linked with the upper side, the right side is linked with the pulley, a turbine shaft penetrates through the pulley and is fixed with the gear at the outer side end, the gear at the end is linked with the rotor at the inner side and the outer side of the generator, the upper part is an integral part of a fan head, the turbine shaft is arranged in the upper part and the lower part and is fixed with the turbine shaft, the rectangular fixing plate is fixed on the inner part of the fan head, the pulley is arranged in the middle, the turbine shaft penetrates through the pulley and is fixed on the rectangular fixing plate, the left end of the turbine shaft penetrating through the pulley is provided with a phase-changing gear 34, the right end of the turbine shaft penetrating through the pulley is provided with a gear 16 which is linked with the outer part, the gear is fixed in an outer fan groove 35, the pulley is linked and is fixed with an outer bracket 36, the bracket, all rotate in the same direction.
The double-layer generator comprises a U-row middle shaft rotor 19 arranged inside the double-layer generator, the middle shaft rotor is linked with a plurality of T rows extending out of a perfect circle on the middle shaft rotor, 8 copper wires are wound in a plurality of T rows of winding grooves 20, a gap is arranged beside the T rows of 5 magnets and the middle shaft rotor, the U-row inner part extending downwards out of the middle shaft rotor and the middle shaft rotor which is on the side are an integral linking mechanism, the inner part extending downwards out of the middle shaft rotor is linked with the T rows of winding grooves, the 8 copper wires are wound in the T rows of winding grooves, the magnets are arranged between the outer middle shaft rotor and the inner side of the T rows of winding grooves, the two sides of the magnets are provided with a gap, the inner layer outside the bottom of the motor is a circular hollow pulley 21 arranged beside the wall of the motor, the circular hollow brush 22 is arranged on the side, the lower side is a circular hollow collecting ring 23, and the circular hollow pulley is fixed with, the three fixing plates 24 on the outer side of the bottom of the motor are used for fixing internal magnets, the magnets and the outer side of the bottom of the U are connected and fixed through round hollow pulleys, gaps are reserved between the outer side of the bottom of the U and the three fixing plates, the magnets inside the bottom of the motor are fixed, the pulleys 10 are arranged beside the magnets, the brushes 11 are arranged on the upper portions of the magnets, the collecting rings 12 are arranged on the lower portions of the magnets, the pulleys 10 are arranged at the front end of the motor, a rotor of a U-shaped middle shaft in the motor extends out to the front end of the motor, and the.
The double-layer alternating-current motor comprises a circular rotor as an inner layer, a plurality of T-row linked excircles are arranged in the circular rotor to form a T-row structure, 8 copper wires are wound in a T-row winding groove, magnets are arranged beside the T-row winding groove, the arrangement mode of the copper wire winding and the magnets is that the odd-numbered magnets and the even-numbered copper wires are arranged (or the magnets are placed in the T-row winding groove and the copper wires are wound on the T-row winding groove), the plurality of T-row linked excircles are arranged in the hollow circular rotor to form the T-row structure, the 8 copper wires are wound in the T-row winding groove and the magnets beside the T-row winding groove, the arrangement mode of the copper wire winding and the magnets is that the odd-numbered magnets, the even-numbered copper wires and the even-numbered copper wires are arranged, the inner layer and the outer layer are fixed through pulleys, the front sections are that the left and the right parts of the upper parts of the inner layer and the outer layer are connected to the inner gear links, the pulley is fixed on the upper cover of the protrusion, four protrusions are the same, the bottom of the motor is a supercharging air port, the wind power supercharger 38 is connected in the air and is connected with an air filter screen 39, the inner wall of the motor shell is provided with a magnet, and the motor is integrally made of carbon fibers or bamboo fibers.
Preferably, all the components can be mutually used according to the needs, the single layer and the double layers are determined according to the needs, and the number of the layers of the motors can be infinitely superposed (such as the wind power is limited and the volume is related).
Preferably, in order to improve the power generation capacity infinitely, the number of layers of the motor can be infinitely superposed, and a gearbox is further arranged at the front of the motor to be used as a motor driving motor (such as nuclear power) for dispersing power to each layer.
Preferably, the hydroelectric power uses a synchronous direct-drive double-layer motor in order to avoid a gearbox.
Preferably, the motor is a brushless motor or a brush motor, and the actual power generation amount is determined.
Preferably, the automatically adjustable independent rotary gearbox is electrically driven, and mechanically driven without an electric motor.
The invention has the advantages that the typhoon generator set integrates the superstrong typhoon, high-speed windward strong wind and common wind into a whole tower footing through integration, reduces the damage of the typhoon to fan blades, improves the generating capacity through the double-layer generator for generating electricity, also provides the generating capacity in other fields, and the generator and the motor have the same technology and are used in the field of motors.
Drawings
For the purpose of clearly illustrating the embodiments of the present invention, the embodiments will be briefly described below using the accompanying drawings. The figures are not drawn to scale.
FIG. 11/a plan view of internal mechanism of single-layer motor and FIG. 1/b plan view of internal tower footing of single-layer motor
FIG. 22/b plan view of accelerating transmission case construction FIG. 2/a plan view of the whole internal mechanism of fan head
FIG. 3 is a plan view of the left and right rotating internal mechanism of the double-layer generator
FIG. 4 is a front plan view of a double-layer generator
FIG. 5 front plan view of an automatically adjustable independently rotatable transmission
FIG. 66/a plan view of a synchronous and same-direction rotating internal front view structure of a double-layer generator, FIG. 6/b plan view of an internal front view structure of a head of a typhoon generator
FIG. 77/a double layer Generator case front elevation view 7/b double layer Generator case bottom elevation view
FIG. 88/a top view of internal mechanism of double-layer AC magnetic generator 8/b front view of internal mechanism of double-layer AC magnetic generator
FIG. 9 is a front view of the bottom housing of the double-layer AC magnetic generator
FIG. 10 front elevation view of a double layer AC magneto front housing
Reference numerals: 1 cylindrical integrated tower foundation, 2 copper cooling fins, 3 water channels, 4 aluminum motor shells, 5 magnets, 6 bearing shaft rotors, 7T-row winding grooves, 8 copper wires, 9 motor bottoms, 10 pulleys, 11 brushes, 12 collecting rings, 13 transformers, 14 turning accelerating gearboxes, 15 hollow pulleys, 16 gears, 17 microgenerators, 18 blades, 19U-row middle shaft rotors, 20T-row winding grooves, 21 circular hollow pulleys, 22 circular hollow brushes, 23 circular hollow collecting rings, 24 three fixing plates, 25 oblique gears, 26 second sections, 27 wires, 28 three circles of copper wires, 29 metal blocks, 30 circular rods, 31 rectangular fixing plates, 32 springs, 33 small holes, 34 phase-changing gears, 35 fan grooves, 36 supports, 37 cylindrical rubber blades, 38 wind power superchargers and 39 air filter screens.
Detailed Description
Embodiments of the present invention will now be described in detail with reference to the accompanying drawings. The drawings are simplified schematic diagrams, only the basic structure of the invention is shown and described.
Example one
As shown in fig. 1/b and fig. 2/a and 2/b, a typhoon generator set comprises a cylindrical integrated tower foundation 1, wherein copper radiating fins 2 are arranged inside the tower foundation, a water channel 3 is arranged beside the tower foundation for radiating seawater, the copper radiating fins and the water channel are fixed with an aluminum motor shell 4, magnets 5 are arranged on the left inner side wall and the right inner side wall of the motor, a bearing shaft rotor 6 is arranged in the middle and fixed with a T-shaped winding groove 7, copper wires 8 are wound in the T-shaped winding groove, the bearing shaft rotor is integrally coaxial with the magnets and the motor shell, an aluminum motor wall is arranged on the outer ring of the bottom 9 of the motor, a pulley 10 is arranged in the middle, brushes 11 are arranged at the bottom of the pulley, a pulley 10 is arranged at the front section of the motor, two ends of the bearing shaft rotor are sleeved in front and rear pulleys of the motor, a collecting ring 12 is extended from the bottom of the bearing shaft, the tower footing front section is internally provided with a direction-changing acceleration gear box 14 which is connected with the end of a heavy shaft rotor in a generator at the front end of the bottom, a hollow pulley 15 at the outer ring of the bottom of the fan head is connected with a cylindrical fusion integrated tower footing, a gear 16 at the rear part in the fan head is fixed with the hollow pulley, a micro generator 17 is connected with the gear at the front end, the front part of the fan head is provided with a pulley 10 for fixing fan blades, and a carbon fiber or bamboo fiber fan blade 18 is fixedly connected with the direction-changing acceleration gear box.
The tower footing and the motor are integrally cast, the assembly components can be cast into a section by section for arrangement convenience, the fan blades are wide fan blades supported by carbon fibers or bamboo fibers, resistance is larger, the fan heads are light and convenient to arrange, and the mode of fixing the tower footing is that steel bars and concrete are poured into a foundation.
Example two
The double-layer generator set comprising the typhoon comprises a U-shaped inner central shaft rotor 19, a plurality of T-shaped extending and out-of-round central shaft rotors linked with the central shaft rotor, 8 copper wires wound in a plurality of T-shaped winding grooves 20, 5 magnets arranged beside the central shaft rotor and having a clearance on the outer side of the whole central shaft rotor, a U-shaped inner downward extending and out-of-round central shaft rotor linked with the central shaft rotor which is a side, 8 copper wires wound in a plurality of T-shaped winding grooves, magnets arranged in the middle of the whole outer central shaft rotor and the inside T-shaped winding grooves and having a clearance on two sides, a circular hollow pulley 21 arranged beside the motor wall on the outer side, a circular hollow brush 22 arranged on the side and a circular hollow collecting ring 23 arranged on the lower side, the round hollow pulley is fixed with a magnet at the inner side, three fixing plates 24 at the outer side of the bottom of the motor are used for fixing the magnet inside, the magnet and the outer side of the bottom of the U are connected and fixed through the round hollow pulley, the outer side of the bottom of the U and the three fixing plates are provided with gaps, the magnet inside the bottom of the motor is fixed with the magnet inside, a pulley 10 is arranged beside the magnet, an electric brush 11 is arranged at the upper part of the magnet, a collecting ring 12 is arranged at the lower part of the magnet, a gear 16 is arranged at the left and right sides of a U-shaped center shaft rotor 19 at the front end of the motor, a round hollow pulley 21 is arranged at the lower part of the motor, an automatic adjustable independent rotating gearbox is arranged inside a pulley 10 fixed on the inner wall, a turbine shaft 26 is sleeved inside the pulley, an oblique gear 25 is arranged at the front end of, the upper part is a gear which is linked with a second turbine shaft 26, the second turbine shaft is sleeved in the pulley and penetrates through the pulley to be fixed with a raised gear link, the second turbine shaft is linked with a second inner layer motor, the gear link which is raised from a gear 16 on the motor is also linked, the electricity generated by the micro-generator 17 is transmitted and wound on three circles of copper wires 28 through an electric wire 27, a metal block 29 is arranged in the middle of each copper wire and has a space with a magnet 5 beside, the magnet is linked through a round rod 30, the gear link is arranged on the left side of each copper wire, the gear is linked with the turbine shaft, the pulley is arranged in the middle of each turbine shaft and is fixed on the inner wall, the round rod 30 is linked at the rear part of each copper wire, a rectangular fixing plate 31 is arranged on the inner wall, a round rod with a small hole at the tail end penetrates through the small hole, a spring 32 is arranged at the tail end, the second turbine shaft of the pulley fixed at the end of the rectangular fixing plate passes through the pulley and extends out of a left section and a right section, the left side is provided with a gear which is linked with the upper gear, the right side is linked with the pulley, the turbine shaft passes through the pulley and is fixed with the gear at the outer side end, the gear at the end is linked with the rotor at the inner side and the outer side of the generator, the upper part is an integral part of the fan head, the turbine shaft is arranged in the upper part and the lower part and is fixed with the turbine shaft, the rectangular fixing plate is fixed on the inner part of the fan head, the pulley is arranged in the middle, the turbine shaft passes through the pulley and is fixed on the rectangular fixing plate, the left end of the turbine shaft passing through the pulley is provided with a phase-changing gear 34, the right end of the turbine shaft of the right part is provided with a gear 16 which is linked with the outer gear at, the bracket holds this cylindrical rubber blade 37, the inner upper and lower parts being identical and rotating in the same direction.
The inner layer and the outer layer of the double-layer motor are on a uniform level, the inner layer is leftwards or rightwards, the outer layer is rightwards or leftwards, a gap is reserved between the inner layer and the outer layer of the motor, the number of layers is not limited, the fan head is a circular hollow fan blade, and the mode of fixing the tower foundation is to fix an expansion pile foundation to the sea.
EXAMPLE III
As shown in fig. 6/a, the double-layer generator comprises a U-row central shaft rotor 19 inside, the central shaft rotor is linked with a plurality of T rows extending out of a perfect circle and linked with a central shaft rotor, 8 copper wires are wound in a plurality of T rows winding grooves 20, 5 magnets are arranged beside the central shaft rotor, a gap is reserved outside the central shaft rotor, the U-row inside extends downwards to form an integral linkage mechanism with the central shaft rotor which is on one side, the inside extends downwards to form the central shaft rotor, the central shaft rotor is linked with a plurality of T rows extending out of a perfect circle and linked with the central shaft rotor, 8 copper wires are wound in a plurality of T rows winding grooves, the magnets are arranged between the outside central shaft rotor and the inside T rows winding grooves, the two sides are spaced, the inside inner layer outside the bottom of the motor is a circular hollow pulley 21 beside the motor wall, the side is a circular hollow brush 22, the bottom is a circular hollow collector ring 23, and the circular hollow pulley is fixed with the magnets inside, the three fixing plates 24 on the outer side of the bottom of the motor are used for fixing internal magnets, the magnets and the outer side of the bottom of the U are connected and fixed through round hollow pulleys, gaps are reserved between the outer side of the bottom of the U and the three fixing plates, the magnets inside the bottom of the motor are fixed, the pulleys 10 are arranged beside the magnets, the brushes 11 are arranged on the upper portions of the magnets, the collecting rings 12 are arranged on the lower portions of the magnets, the pulleys 10 are arranged at the front end of the motor, a rotor of a U-shaped middle shaft in the motor extends out to the front end of the motor, and the.
The inner layer and the outer layer of the double-layer motor are on a uniform level, the inner layer and the outer layer synchronously rotate in the same direction, the gearbox and the steam turbine are arranged at the front end of the motor and can be used as a foundation for tide, nuclear power, hydroelectric power and the like, the generated energy is nuclear power to the maximum, and the motor can be stacked to more than ten thousand megawatts without being on-line.
Example four
The double-layer AC motor as shown in FIG. 8/b comprises a circular rotor inside, a plurality of T rows linked with the excircle to form a T row structure inside the circular rotor, 8 copper wires wound in a T row winding groove, magnets beside the T row winding groove, the arrangement of the copper wire winding and magnets is odd number magnets, even number copper wires, the arrangement (or the magnets placed in the T row winding groove, the copper wires wound on the upper side) is a plurality of T rows linked with the excircle to form a T row structure inside the hollow circular rotor, 8 copper wires wound in the T row winding groove and beside the magnet, the arrangement of the copper wire winding and magnets is odd number magnets, even number copper wires, the arrangement of the copper wires, the inner layer and the outer layer are fixed by pulleys, the front section is a gear wheel on the left and the right of the upper part of the inner layer and the outer layer, the gear link connected to the inner layer and the outer layer is a pulley, and a collecting ring is arranged below the pulley, the four protrusions are also arranged at the bottom of the motor, the rotor of the inner layer and the rotor of the outer layer at the bottom of the motor extend out of the four protrusions, the four protrusions are fixed by the pulleys, the bottom of the motor is provided with a pressurizing air port, the pressurizing air port is connected with an air-in wind booster 38 and is connected with an air filter screen 39, the inner wall of the shell of the motor is provided with a magnet, and the motor is integrally made of carbon fibers or bamboo fibers.
The inner layer and the outer layer of the double-layer motor are on a uniform level, the inner layer is towards the left or right, the outer layer is towards the right or left, a gap is reserved between the inner layer and the outer layer of the motor, the magnets are fused beside the coils inside the rotor, and the magnets are arranged on the inner wall outside the motor. The power source is a nuclear reactor, a gas turbine, a steam turbine, an internal combustion engine, or the like.
The middle of the motor is also provided with a round magnet which is not illustrated but has little influence, only one gear box is arranged at the front end when the motor is used on a warship, and the direct drive is good in size, is not suitable for use and can be used according to requirements.
The motor is used only by using the motor in a mode that the positive electrode and the negative electrode of the motor are crossed and used, if the inner layer motor rotates left, the outer layer motor rotates right or the inner layer rotates right, and if the motor directly drives the motor to rotate in the same direction, the motor is not needed, the motor can be used for civil and military purposes, and the civil motor is lighter and smaller in size.
The present invention is not limited to the above embodiments, and any person who uses the present invention as a base may modify the present invention in any form within the scope of the present invention.

Claims (5)

1. A typhoon generator set is characterized by comprising a cylindrical fusion integrated tower foundation 1, copper radiating fins 2 are arranged inside the tower foundation, a water channel 3 is arranged beside the tower foundation to allow seawater to radiate heat, the copper radiating fins and the water channel are fixed with an aluminum motor shell 4, magnets 5 are arranged on the left inner side wall and the right inner side wall of a motor, a bearing shaft rotor 6 is arranged in the middle of the motor and fixed with a T-shaped winding groove 7, copper wires 8 are wound in the T-shaped winding groove, the bearing shaft rotor is integrally coaxial with the magnets and the motor shell, an aluminum motor wall is arranged on the outer ring of the bottom 9 of the motor, a pulley 10 is arranged in the middle of the motor, an electric brush 11 is arranged at the bottom of the pulley, the front section of the motor is the pulley 10, the two ends of the bearing shaft rotor are sleeved in the front pulley and the rear pulley of the motor, collecting rings 12 extend out from the bottom of the bearing shaft rotor, the collecting rings extend, the fan head is connected with a heavy shaft rotor end in a generator at the front end of the bottom, a hollow pulley 15 at the outer ring of the bottom of the fan head is connected with a cylindrical fusion integrated tower base, a gear 16 at the rear part in the fan head is fixed with the hollow pulley, a micro generator 17 at the rear part is connected with a gear at the front end, a pulley 10 for fixing fan blades is arranged at the front part of the fan head, and a carbon fiber or bamboo fiber fan blade 18 is fixedly connected with a direction-changing accelerating gearbox;
the typhoon double-layer generator set comprises a U-row central shaft rotor 19 inside, wherein the central shaft rotor is linked with a plurality of T rows extending out of a perfect circle and linked with the central shaft rotor, 8 copper wires are wound in a plurality of T rows of winding grooves 20, 5 magnets are arranged beside the central shaft rotor, a gap is reserved outside the central shaft rotor, the U-row internal portion extending downwards out of the central shaft rotor and the central shaft rotor on the side are an integral linking mechanism, the internal portion extending downwards out of the central shaft rotor is linked with the central shaft rotor, the 8 copper wires are wound in a plurality of T rows of winding grooves, the magnets are arranged between the external central shaft rotor and the internal T rows of winding grooves, the two sides of the magnets are provided with a gap, the internal inner layer outside the bottom of the motor is a circular hollow pulley 21 beside the motor wall, the circular hollow brush 22 is arranged on the side, the lower side is a circular hollow collecting ring 23, and the circular hollow pulley is fixed with the magnets on the internal side, three fixing plates 24 on the outer side of the bottom of the motor are used for fixing internal magnets, the magnets and the outer side of the bottom of the U are connected and fixed through round hollow pulleys, gaps are reserved between the outer side of the bottom of the U and the three fixing plates, the magnet is fixed with the internal magnets in the bottom of the motor, the pulley 10 is arranged beside the magnet, the brush 11 is arranged on the upper portion of the magnet, the collecting ring 12 is arranged on the lower portion of the magnet, the gear 16 is arranged on the left side and the right side of a U-shaped center shaft rotor 19 at the front end of the motor, the round hollow pulley 21 is arranged on the lower portion of the motor, the pulley 10 is arranged in the front end tower base, the pulley 10 is fixed on the inner wall, the turbine shaft 26 is arranged in the middle of the automatic adjustable independent rotating gearbox, the inclined gear 25 is arranged at the front end of the turbine shaft, the pulley, the second section of turbine shaft is sleeved in the pulley and penetrates through the pulley and is fixedly connected with a raised gear link and is linked with a second inner layer motor, the gear 16 on the motor is raised through the raised gear link, the electricity generated by the micro-generator 17 is transmitted and wound on three circles of copper wires 28 through an electric wire 27, a metal block 29 is arranged in the middle of each copper wire and is spaced from a magnet 5 beside each copper wire, the magnet is linked through a round rod 30, the left side of each magnet is connected with the turbine shaft through a gear link, the middle of each gear is fixed on the inner wall through a pulley, the rear part of each turbine shaft is connected with the round rod 30, a rectangular fixing plate 31 is arranged on the inner wall, a round rod with a small hole at the tail end penetrates through the small hole, a spring 32 is arranged at the tail end of the round rod and is welded together with the spring, the tail end of the rectangular fixing plate is provided with a small hole 33, the round rod penetrates through the small hole to, the left side is provided with a gear which is linked with the upper side, the right side is linked with the pulley, a turbine shaft penetrates through the pulley and is fixed with the gear at the outer side end, the gear at the end is linked with the rotor at the inner side and the outer side of the generator, the upper part is an integral part of a fan head, the turbine shaft is arranged in the upper part and the lower part and is fixed with the turbine shaft, the rectangular fixing plate is fixed on the inner part of the fan head, the pulley is arranged in the middle, the turbine shaft penetrates through the pulley and is fixed on the rectangular fixing plate, the left end of the turbine shaft penetrating through the pulley is provided with a phase-changing gear 34, the right end of the turbine shaft penetrating through the pulley is provided with a gear 16 which is linked with the outer part, the gear is fixed in an outer fan groove 35, the pulley is linked and is fixed with an outer bracket 36, the bracket, all rotate in the same direction;
the double-layer generator comprises a U-row middle shaft rotor 19 arranged inside the double-layer generator, the middle shaft rotor is linked with a plurality of T rows extending out of a perfect circle on the middle shaft rotor, 8 copper wires are wound in a plurality of T rows of winding grooves 20, a gap is arranged beside the T rows of 5 magnets and the middle shaft rotor, the U-row inner part extending downwards out of the middle shaft rotor and the middle shaft rotor which is on the side are an integral linking mechanism, the inner part extending downwards out of the middle shaft rotor is linked with the T rows of winding grooves, the 8 copper wires are wound in the T rows of winding grooves, the magnets are arranged between the outer middle shaft rotor and the inner side of the T rows of winding grooves, the two sides of the magnets are provided with a gap, the inner layer outside the bottom of the motor is a circular hollow pulley 21 arranged beside the wall of the motor, the circular hollow brush 22 is arranged on the side, the lower side is a circular hollow collecting ring 23, and the circular hollow pulley is fixed with, the three fixing plates 24 on the outer side of the bottom of the motor are used for fixing internal magnets, the magnets and the outer side of the bottom of the U are connected and fixed through round hollow pulleys, gaps are reserved between the outer side of the bottom of the U and the three fixing plates, the magnet is fixed with the internal magnets in the bottom of the motor, the pulley 10 is arranged beside the magnet, the upper part of the motor is provided with an electric brush 11, the lower part of the motor is provided with a collecting ring 12, the front end of the motor is provided with the pulley 10, a U-shaped traveling middle shaft rotor in the motor extends out to the front end of the;
the double-layer alternating-current motor comprises a circular rotor inside, a plurality of T rows of linked excircles are arranged in the circular rotor to form a T row structure, 8 copper wires are wound in a T row winding groove, magnets are arranged beside the T row winding groove, the arrangement mode of the copper wire winding and the magnets is that a single magnet and a double copper wires are arranged (or the magnets are placed in the T winding groove and the copper wires are wound on the T winding groove), a plurality of T rows of linked excircles are arranged in the hollow circular rotor to form the T row structure, 8 copper wires are wound in the T row winding groove, magnets are arranged beside the T row winding groove, the arrangement mode of the copper wire winding and the magnets is that a single magnet and a double copper wires are arranged, the inner layer and the outer layer are fixed through pulleys, the front section is that a gear is arranged on the left side and the right side of the upper part of the inner layer and the upper part of the outer layer and is linked with a gear in the inner layer, the four protrusions are fixed by sleeving the pulleys on the protrusions, the bottom of the motor is provided with a pressurizing air port, the pressurizing air port is connected with a wind power supercharger 38 in the wind and is connected with an air filter screen 39, the inner wall of the shell of the motor is provided with a magnet, and the whole motor is made of carbon fibers or bamboo fibers;
the wind power generated by the double-layer generator can also be applied to other power generation fields which use the double-layer generator as energy conversion, and the double-layer motor is used as an energy conversion motor.
2. The typhoon-powered (single-layer) motor as claimed in claim 1, wherein the tower foundation and the motor are integrally cast, and can be cast into a one-section assembly for installation convenience, the fan blades are wide fan blades supported by carbon fiber or bamboo fiber, the resistance is higher, the fan head is light and convenient to install, and the mode of fixing the tower foundation is steel bar and concrete pouring foundation.
3. The typhoon double-layer generator set according to claim 2, wherein the inner layer and the outer layer of the double-layer motor are on a uniform level, the inner layer is left or right, the outer layer is right or left, the inner layer and the outer layer of the motor are provided with gaps, the number of the layers is not limited, the fan head is a circular hollow fan blade, and the tower base is fixed by driving an expansion pile foundation to the sea.
4. The double-layer generator set according to claim 3, wherein the inner and outer layers of the double-layer motor are on a uniform level, and rotate synchronously in the same direction, so that the double-layer motor is suitable for direct-drive power generation, such as hydroelectric power generation and the like.
5. The double-layer AC-magnetic motor as claimed in claim 4, wherein the inner and outer layers of said double-layer motor are on a uniform level, the inner layer is left or right, the outer layer is right or left, the inner and outer layers of the motor have gaps, the magnets are fused beside the inner coil of the rotor, and the magnets are arranged on the outer inner wall of the motor.
CN202010741808.0A 2020-07-19 2020-07-19 Typhoon generator set Pending CN111852779A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202010741808.0A CN111852779A (en) 2020-07-19 2020-07-19 Typhoon generator set

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202010741808.0A CN111852779A (en) 2020-07-19 2020-07-19 Typhoon generator set

Publications (1)

Publication Number Publication Date
CN111852779A true CN111852779A (en) 2020-10-30

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Application Number Title Priority Date Filing Date
CN202010741808.0A Pending CN111852779A (en) 2020-07-19 2020-07-19 Typhoon generator set

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Country Link
CN (1) CN111852779A (en)

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JP2018023218A (en) * 2016-08-03 2018-02-08 澤藤電機株式会社 Rotor structure in outer rotor type multi-polar generator
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Application publication date: 20201030