CN112727683B - Wind energy, solar energy and fitness equipment combined power generation device for park - Google Patents
Wind energy, solar energy and fitness equipment combined power generation device for park Download PDFInfo
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- CN112727683B CN112727683B CN202110002145.5A CN202110002145A CN112727683B CN 112727683 B CN112727683 B CN 112727683B CN 202110002145 A CN202110002145 A CN 202110002145A CN 112727683 B CN112727683 B CN 112727683B
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- 238000010248 power generation Methods 0.000 title claims abstract description 48
- 238000004146 energy storage Methods 0.000 claims abstract description 47
- 230000000630 rising effect Effects 0.000 claims description 9
- 230000001681 protective effect Effects 0.000 claims description 8
- 230000001174 ascending effect Effects 0.000 claims description 2
- 239000008358 core component Substances 0.000 claims description 2
- 238000010586 diagram Methods 0.000 description 13
- 239000011295 pitch Substances 0.000 description 7
- 230000008901 benefit Effects 0.000 description 5
- 230000005611 electricity Effects 0.000 description 3
- 238000006243 chemical reaction Methods 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 230000002035 prolonged effect Effects 0.000 description 2
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 2
- 230000005540 biological transmission Effects 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 230000000737 periodic effect Effects 0.000 description 1
- 230000008092 positive effect Effects 0.000 description 1
- 230000001932 seasonal effect Effects 0.000 description 1
- 239000000126 substance Substances 0.000 description 1
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- 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
- F03D—WIND MOTORS
- F03D9/00—Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations
- F03D9/007—Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations the wind motor being combined with means for converting solar radiation into useful energy
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- 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
- F03D—WIND MOTORS
- F03D3/00—Wind motors with rotation axis substantially perpendicular to the air flow entering the rotor
- F03D3/06—Rotors
- F03D3/061—Rotors characterised by their aerodynamic shape, e.g. aerofoil profiles
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- 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
- F03D—WIND MOTORS
- F03D3/00—Wind motors with rotation axis substantially perpendicular to the air flow entering the rotor
- F03D3/06—Rotors
- F03D3/062—Rotors characterised by their construction elements
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- 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
- F03D—WIND MOTORS
- F03D9/00—Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations
- F03D9/10—Combinations of wind motors with apparatus storing energy
- F03D9/11—Combinations of wind motors with apparatus storing energy storing electrical energy
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- 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
- F03G—SPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
- F03G5/00—Devices for producing mechanical power from muscle energy
- F03G5/02—Devices for producing mechanical power from muscle energy of endless-walk type, e.g. treadmills
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J7/00—Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
- H02J7/34—Parallel operation in networks using both storage and other dc sources, e.g. providing buffering
- H02J7/35—Parallel operation in networks using both storage and other dc sources, e.g. providing buffering with light sensitive cells
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- 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
- Y02E10/40—Solar thermal energy, e.g. solar towers
- Y02E10/46—Conversion of thermal power into mechanical power, e.g. Rankine, Stirling or solar thermal engines
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- 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
- Y02E10/70—Wind energy
- Y02E10/74—Wind turbines with rotation axis perpendicular to the wind direction
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- 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
- Y02E10/70—Wind energy
- Y02E10/76—Power conversion electric or electronic aspects
-
- 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
- Y02E70/00—Other energy conversion or management systems reducing GHG emissions
- Y02E70/30—Systems combining energy storage with energy generation of non-fossil origin
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Life Sciences & Earth Sciences (AREA)
- Sustainable Development (AREA)
- Sustainable Energy (AREA)
- Power Engineering (AREA)
- Physics & Mathematics (AREA)
- Fluid Mechanics (AREA)
- Wind Motors (AREA)
Abstract
The invention relates to a wind energy, solar energy and fitness equipment combined power generation device for a park, which is technically characterized in that: the device comprises a supporting structure module, a fan blade rotating protection device, a solar panel module, a fitness equipment module and an electric power storage and energy storage module; the fan blade rotation module and the fan blade rotation protection device are sequentially arranged at the upper end of the supporting structure module from top to bottom, and the solar panel module is arranged on the upper surface of the fan blade rotation protection device; the fitness equipment module is fixed around the bottom of the support structure module; the electric storage and energy storage module is arranged below the solar panel module; the fan blade rotating module, the solar panel module and the fitness equipment module are connected with the electric power storage and energy storage module and store the generated electric energy in the electric power storage and energy storage module. The invention combines wind energy, solar energy and mechanical energy together, can utilize energy resources more efficiently, more fully and more comprehensively in different power generation modes in the park, and has the characteristics of safety, reliability, convenient use, high efficiency and the like.
Description
Technical Field
The invention belongs to the technical field of comprehensive power generation, and particularly relates to a wind energy and solar energy and fitness equipment combined power generation device for a park.
Background
Wind energy and solar energy belong to renewable clean energy sources. Wind energy is a novel renewable energy source, is clean and pollution-free, has large reserves and wide distribution, receives attention of all countries in the world, and has extremely high development potential. Solar energy is converted in the form of chemical energy in the development process, and is less harmful to the environment compared with other renewable energy sources. Solar energy has the advantages of wide distribution, high energy density and the like, is inexhaustible, and is a main research direction at present how to utilize the solar energy more effectively to benefit mankind. Solar energy is widely researched and utilized, and the development and utilization of solar energy are relatively mature worldwide. The wind energy has the advantages of wide resources, no land resource occupation, environment beautification, distributed power generation, self-sufficiency of energy, power grid burden reduction and the like. Therefore, the development of wind energy is paid great attention to all countries, the wind power development of China enters the large-scale and commercialized development stage at present, and the development prospect of wind energy is good.
Since wind energy is the most unstable energy of renewable energy, it cannot be generated periodically, has seasonal and periodic variations, and is relatively dispersed and not easy to collect, thereby causing difficulty in wind energy utilization, it is very important to collect and utilize wind energy efficiently during the period of wind energy generation. The power generated by the wind energy and the solar energy of the park independently is small, the requirement of the park power load cannot be met independently, and the wind energy of the park is difficult to collect, so that the problem that how to fully utilize the wind energy, the solar energy and the mechanical energy converted by the fitness equipment in the park and collect more energy is urgently needed to be solved at present.
Disclosure of Invention
The invention aims to overcome the defects of the prior art and provides a wind energy, solar energy and fitness equipment combined power generation device for a park, which has the advantages of reasonable design, stable performance and high energy utilization efficiency.
The technical problem to be solved by the invention is realized by adopting the following technical scheme:
a wind energy, solar energy and fitness equipment combined power generation device for a park comprises a supporting structure module, a fan blade rotating protection device, a solar panel module, a fitness equipment module and an electric power storage and energy storage module; the device comprises a supporting structure module, a fan blade rotating protection device, a solar panel module, a fitness equipment module and an electric power storage and energy storage module; the fan blade rotation module and the fan blade rotation protection device are sequentially arranged at the upper end of the supporting structure module from top to bottom, and the solar panel module is arranged on the upper surface of the fan blade rotation protection device; the fitness equipment module is fixed around the bottom of the support structure module; the electric power storage and energy storage module is arranged below the solar panel module; the fan blade rotating module, the solar panel module and the fitness equipment module are connected with the electric power storage and energy storage module and store the generated electric energy in the electric power storage and energy storage module.
Further, the support structure module comprises a main support rod, three auxiliary support rods, four transverse circular fixing rods, a top disc, a bottom disc and four triangular fixing frames; the upper end of the main support rod is coaxially fixed at the center of the top disc, and the lower end of the main support rod is inserted into and fixed with the bottom disc; the upper ends of the three auxiliary support rods are arranged on the periphery of the main support rod in a circumferential array and are connected with the top disc, and the lower ends of the three auxiliary support rods are downwards inserted into the bottom disc and fixed; the four transverse round fixed rods are transversely arranged around the auxiliary support rod body and connect the three auxiliary support rods; the upper end of the top disc supports the solar panel module, and the lower end of the top disc is connected with a main supporting rod and three auxiliary supporting rods in a circumferential array; the upper end of the bottom disc is connected with a main supporting rod, three auxiliary supporting rods and an electric storage and energy storage module; the four triangular fixing frames are arranged around the main supporting rod, the upper ends of the triangular fixing frames are connected with the main supporting rod, and the lower ends of the triangular fixing frames are connected with the transverse round supporting rod;
the fan blade rotating module comprises four rotating fan blades, a main circular fixing rod, an auxiliary circular fixing rod and a main fixing disk, and the fan blade rotating module protecting device comprises two auxiliary fixing disks, four disk fixing buckles, auxiliary disk cylindrical fixing columns, a cross fixing frame bearing, a cylindrical fixing column, a wind energy rotating gear, a generator rotating gear, a gear fixing disk, a rotating and forwarding motor box, a gear fixing bearing, a main rotating rod body, four rotating vertical supporting rods, a main bearing, an auxiliary bearing, four inclined supporting rods and three transverse circular fixing rods; the four rotating fan blades are of an equidistant spiral ascending structure and are spirally connected with the main rotating rod body, the upper ends of the four rotating fan blades are connected with the main circular fixing rod, and the lower ends of the four rotating fan blades are connected with the auxiliary circular fixing rod; the main rotating rod body is connected with the main bearing, is vertically inserted into the main fixed disc and can rotate freely; the main fixed disc is connected with the main rotating rod body through a main bearing; the upper ends of the four rotating vertical supporting rods are connected with the main fixed disc and are in a cylindrical array, and the lower ends of the four rotating vertical supporting rods are connected with the protective shell of the wind energy device and support the main fixed disc; the two auxiliary fixed disks are connected through eight auxiliary disk cylindrical fixed columns and are connected with the main rotating rod body through auxiliary bearings; the four disk fixing buckles are circumferentially arrayed around the auxiliary fixing disks, one surface of each disk fixing buckle is connected with the two auxiliary fixing disks, and the other surface of each disk fixing buckle is connected with the inclined supporting rod; one side of the cross fixing frame is connected with the main rotating rod body through a cross fixing frame bearing, and the other side of the cross fixing frame is connected with the gear fixing disc through four cylindrical fixing columns; the four inclined support rods are circumferentially arrayed around the auxiliary fixed disk, the upper ends of the four inclined support rods are connected with the auxiliary fixed disk through the disk fixing buckles, the lower ends of the four inclined support rods are connected with the bottom of the protective shell of the wind energy device, and the auxiliary fixed disk is supported; the three transverse round fixing rods connect the four inclined supporting rods to fix the inclined supporting rods; the wind energy device protective shell is fixed around the rotating and forwarding motor box and is connected with the main fixed disc through four rotating vertical supporting rods; the upper end of the gear fixing disc is connected with the cross fixing frame through four cylindrical fixing columns, and the side face of the gear fixing disc is connected with a generator rotating gear through a gear fixing bearing; the rotary generator is arranged in the rotary forwarding motor box, is upwards connected with the wind energy rotary gear at the lower part of the main rotary rod body through a generator rotary gear, and is downwards connected with the electric power storage and energy storage module; the four rotating fan blades spirally rise along the obliquely upward and anticlockwise directions at equal intervals;
the solar panel module is arranged on the upper surface of the fan blade rotation protection device; the solar panel module comprises six solar panels, six solar panel vertical supporting frames, a disc, a hexagonal solar panel fixing frame, a groove and a solar power generation box; the six solar panels and the horizontal plane form a certain inclination angle and are arranged around the generator box in a circumferential array mode, the upper ends of the six solar panels are connected with the hexagonal solar panel fixing frame, and the lower ends of the six solar panels are connected with the disc; the upper ends of the six solar panel vertical supporting frames are connected with the solar panels, and the lower ends of the six solar panel vertical supporting frames are fixed on the circular disc; the upper end of the disc is connected with the generator box, and the lower end of the disc is connected with the supporting structure module through the vertical supporting frame and the transverse supporting frame; the hexagonal solar panel fixing frame is positioned at the upper end of the generator box and used for fixing six solar panels; the grooves are positioned at the upper end of the disc and are distributed in a circumferential manner; the solar panel and the horizontal plane form an inclination angle of 30 degrees;
the fitness equipment module is fixed around the bottom of the support structure module; the fitness equipment comprises a circular turntable, a turntable fixing frame, a turntable rotating rod, a turntable triangular supporting frame, a turntable driving wheel, a first rotary generator, a first conveying belt, a rotating wheel rotating rod, a rotating wheel main supporting rod, a dodecagon fixing seat, a pedal, a rotating wheel triangular supporting frame, a rotating wheel circular fixing rod, a rotating wheel vertical supporting rod, a rotating wheel driving wheel, a second conveying belt and a second rotary generator; the circular turntable is connected with the turntable fixing frame through three cylindrical supporting seats; the center of the rotary table fixing frame is connected with the top of the rotary rod of the rotary table; the top end of the rotary rod of the rotary disc is connected with the rotary disc fixing frame, the bottom of the rotary rod of the rotary disc is connected with the first conveying belt through a rotary disc driving wheel, and the middle part of the rotary rod of the rotary disc is connected with the rotary disc triangular supporting frame through a bearing; the top of the turntable triangular support frame is connected with a turntable rotating rod through a bearing to support the circular turntable; the turntable driving wheel is positioned at the bottom of the turntable rotating rod and drives the driving wheel of the first rotary generator to rotate through the first conveying belt; the first rotary generator is arranged in the first rotary generator box and positioned at the upper end of the disc at the top of the supporting structure module, and is connected with the rotary table driving wheel at the bottom of the rotary table rotating rod through a first conveyor belt by a first rotary generator driving wheel and is upwards connected with the electric storage and energy storage module; one end of the rotating wheel rotating rod is connected with the rotating wheel conveying wheel, the other end of the rotating wheel rotating rod is connected with the dodecagon fixing seat through a bearing, the middle part of the rotating wheel rotating rod is connected with the turntable triangular supporting frame through a bearing, and the rotating wheel rotating rod supports the rotating wheel main body and is a core component of the fitness rotating wheel; the top of the rotating wheel triangular support frame is connected with a rotating rod of the rotating wheel through a bearing to support the main body of the rotating wheel; the left side of the center of the dodecagon fixing seat is connected with a rotating rod of a rotating wheel through a bearing, the right side of the dodecagon fixing seat is connected with a main supporting rod of the rotating wheel through a bearing, and the side surface of the dodecagon fixing seat is connected with twelve vertical supporting rods of the rotating wheel; twelve pedals are respectively connected with twelve rotating wheel vertical supporting rods; the two rotary wheel circular fixed rods are respectively used for connecting twelve rotary wheel vertical supporting rods; the rotating wheel driving wheel is positioned at the bottom of the rotating rod of the rotating wheel and drives the driving wheel of the second rotary generator to rotate through the second conveying belt; the second rotary generator is arranged in the second rotary generator box and positioned at the upper end of the disc at the top of the supporting structure module, and is connected with the rotating wheel driving wheel at the bottom of the rotating wheel rotating rod through a second conveyor belt by a second rotary generator driving wheel and is upwards connected with the electric storage and energy storage module;
the electric power storage and energy storage module is arranged below the solar panel module; the electric power storage and energy storage module comprises a power generation device platform and an electric power storage and energy storage box; the power generation device platform is coaxially fixed at the lower part of the solar panel module disc, the upper end of the power generation device platform is connected with the rotary generator of the fan blade rotating module through the disc, and the lower end of the power generation device platform is connected with the rotary generator of the body-building module and is connected with the electric storage energy storage box through the vertical supporting rod; and a storage battery is arranged in the electric storage energy storage box and is fixed at the upper end of the disc at the bottom of the supporting structure module, and the upper end of the disc is connected with the power generation device protection platform through a vertical supporting rod.
Further, the spiral rising angle of the four rotary fan blades is 60 degrees, the number of rising turns is 5, the distance between every two adjacent turns is gradually increased from bottom to top and is respectively 10cm,20cm,30cm and 40cm, the screw pitch is gradually increased when the four rotary fan blades spirally rise, the screw pitch difference between every two adjacent turns is 20cm, and the radiuses of five spiral turns from bottom to top are respectively 40cm,60cm,80cm and 100 cm; the six solar panels form an inclination angle of thirty degrees with the horizontal plane.
The invention has the advantages and positive effects that:
1. the wind power generation tower is reasonable in design, receives wind energy through the upper wind power generation area, the middle solar power generation area converts solar energy by utilizing the inclined solar panel, the lower fitness equipment power generation area converts mechanical energy, so that the power generation device tower can simultaneously carry out different power generation modes, energy resources can be utilized more efficiently, more fully and more comprehensively, the energy sources are expanded, the total amount of received energy is increased, the problems of single power generation mode and low utilization rate are solved, and the wind power generation tower has the characteristics of safety, reliability, convenience in use, high efficiency and the like; meanwhile, wind energy and light energy belong to clean renewable energy sources, the energy conversion process is clean and environment-friendly, and mainly conversion of mechanical energy does not affect the environment.
2. The solar panel module adopts a structure that the solar panel and the horizontal plane form an inclination angle of 30 degrees, so that the solar panel can receive solar energy without being greatly influenced along with the rising and falling of the sun, can receive the solar energy to the maximum extent and maximizes the utilization rate of the solar energy.
3. The four rotating blades of the blade rotating module spirally rise in an obliquely upward 60-degree anticlockwise direction at equal intervals and are connected with the main rotating rod in a spiral shape, the number of rising turns is 5, the distance between every two adjacent turns is gradually increased from bottom to top and is respectively 10cm,20cm,30cm and 40cm, the pitch is gradually increased when the blades spirally rise, the pitch difference between every two adjacent turns is 20cm, and the radiuses of five spiral turns from bottom to top are respectively 40cm,60cm,80cm and 100 cm.
4. The invention adopts the main support rod, the auxiliary support rod, the transverse round fixed rod, the top disc, the bottom disc, the triangular fixed frame and the like to form the support structure module, the cylindrical rod bodies are subjected to smaller wind force, the damage to the device tower in case of strong wind is reduced to a certain extent, and the service life is prolonged. In addition, the main support rod, the auxiliary support rod, the transverse circular connecting rod and the triangular fixing frame are connected in a triangular and circular mode, and the stability of the whole power generation device tower is improved to a certain extent.
5. The fan blade rotating module and the solar module are both positioned at the upper end of the device, land resources are not occupied, and the disc of the solar module is provided with six grooves with the depth of 2cm, so that the device can not accumulate water and snow when raining or snowing, and the stability of the device tower is improved.
6. The fitness equipment module provided by the invention has two types of fitness equipment, so that the mechanical energy converted by the fitness equipment during fitness is effectively utilized, the diversity of energy sources is increased, and the power load is effectively shared.
Drawings
FIG. 1 is a connection diagram of the overall structure of the present invention;
FIG. 2 is an overall block diagram of the support structure module of the present invention;
FIG. 3 is a top block diagram of the support structure module of the present invention;
FIG. 4 is a lower half block diagram of the support structure module of the present invention;
FIG. 5 is a view of a blade rotation module according to the present invention;
fig. 6 is an overall structure diagram of the fan blade rotation module protection device of the present invention;
fig. 7 is a gear connection diagram of the fan blade rotation module protection device of the present invention;
fig. 8 is a connection diagram of a fan blade rotation module and a fan blade rotation module protection device of the invention;
fig. 9 is a structure diagram of a fixing rod of the fan blade rotating module protection device of the present invention;
figure 10 is a block diagram of a solar panel module of the present invention;
FIG. 11 is a block diagram of a fitness equipment turntable module of the present invention;
FIG. 12 is a block diagram of an exercise apparatus wheel module of the present invention;
FIG. 13 is a rotary generator connection diagram of the exercise equipment module of the present invention;
FIG. 14 is an overall connection diagram of an exercise equipment module of the present invention;
in the figure, 1: support structure module, 2: fan blade rotation module, 3: solar panel module, 4: body-building apparatus carousel module, 5: body-building apparatus runner module, 6: electric storage energy storage module, 7: fan blade rotation protection device, 1-1: main support rod, 1-2: auxiliary supporting rod, 1-3: transverse round fixing rod, 1-4: top disk, 1-5: bottom disc, 1-6: power generation device platform, 1-7: triangle mount, 1-8: vertical support bar, 1-9: electric storage energy storage box, 2-1: rotating fan blades, 2-2: main circular fixing rod, 2-3: auxiliary circular fixing rod, 2-4: main fixed disc, 3-1: auxiliary fixed disc, 3-2: disc fixing buckle, 3-3: auxiliary disc cylindrical fixing column, 3-4: cross fixing frame, 3-5: rotating and forwarding motor box and 3-6: cylindrical fixing column, 3-7: wind energy rotating gear, 3-8: generator rotating gear, 3-9: gear fixing disc, 3-10: gear fixing bearing, 4-1: main rotating rod body, 4-2: rotating the vertical supporting rod, 4-3: main bearing, 4-4: auxiliary bearing, 4-5: inclined support rod, 4-6: transverse round fixing rod, 4-7: cross fixing frame bearing, 5-1: solar panel, 5-2: vertical support frame of solar panel, 5-3: disc, 5-4: hexagonal solar panel mount, 5-5: groove, 6-1: circular turntable, 6-2: turntable fixing frame, 6-3: rotary rod of rotary disk, 6-4: a turntable transmission wheel and 6-5: turntable triangular support frame, 7-1: rotating rod of rotating wheel, 7-2: runner triangular support frame, 7-3: dodecagon fixing base, 7-4: pedal, 7-5: main fixed rod of runner, 7-6: a rotating wheel round fixing frame, 7-7: runner vertical support pole, 7-8: carousel drive wheel, 8-1: first rotary electric generator, 8-2: second rotary electric generator, 8-3: first rotary generator drive wheel, 8-4: a second rotary generator drive wheel, 8-5: first conveyor belt, 8-6: a second conveyor belt.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
A wind energy, solar energy and fitness equipment combined power generation device for a park is shown in figure 1 and comprises a supporting structure module 1, a fan blade rotating module 2, a solar panel module 3, a fitness equipment turntable module 4, a fitness equipment rotating wheel module 5, an electric power storage and energy storage module 6 and a fan blade rotating protection device 7. The support structure module 1 serves as a foundation for a structural support for the installation of all other modules. The fan blade rotation module 2 and the fan blade rotation protection device 7 are sequentially arranged at the upper end of the supporting structure module 1 from top to bottom, and the solar panel module is arranged on the upper surface of the fan blade rotation protection device 7. The fitness equipment turntable module 4 and the fitness equipment module 5 are both fixed around the bottom of the support structure module 1. The electric power storage and energy storage module 6 is installed below the solar panel module 3. The fan blade rotating module 2, the solar panel module 3, the body-building equipment turntable module 4 and the body-building equipment rotating wheel module 5 are all connected with the electric power storage energy storage module 6 and store the generated electric energy in the electric power storage energy storage module.
As shown in fig. 2 to 4, the support structure module 1 includes a main support rod 1-1, an auxiliary support rod 1-2, a horizontal circular fixing rod 1-3, a top disk 1-4, a bottom disk 1-5, a power generation device platform 1-6, a triangular fixing frame 1-7, a vertical support rod 1-8 and an electric storage energy storage box 1-9. The main support rod 1-1 is coaxially fixed under the top disc 1-4, supports the top disc 1-4 and the power generation device platform 1-6, and also supports other modules and devices on the power generation device platform. The three auxiliary support rods 1-2 are circumferentially arrayed and fixed around the main support rod 1-1, and form a triangle at the same time, so that the stability of the device is improved; it can be seen that the entire power plant is substantially supported by the primary and secondary support bars. The upper surface of the power generation device platform 1-6 is connected with a fan blade rotation protection device module 7 through a disc 5-3 of a solar panel module 3, and the lower surface is connected with a bottom disc 1-5 through a vertical support rod 1-8 and coaxially fixed above a top disc 1-4; the power generation device platform 1-6 is located at the center of the whole power generation device, and is a core module for converting energy of other forms into electric energy, the support structure module 1 is used for placing or suspending and fixing each module, and is a structural foundation of the whole power generation device, and all power generation modules are set up by the support structure module 1. The four transverse circular fixing rods 1-3 are fixed around the main supporting rod 1-1 at equal intervals in the vertical direction, and the three auxiliary supporting rods 1-2 are connected to enhance the stability between the auxiliary supporting rods. The top disks 1-4 and the bottom disks 1-5 respectively fix the upper ends and the lower ends of the main supporting rod and the three auxiliary supporting rods together, so that the stability between the main supporting rod and the auxiliary supporting rods is improved. The triangular fixing frame is composed of four main supporting rods and four transverse circular fixing rods, and the stability between the main supporting rods and the auxiliary supporting rods is enhanced. The device comprises a main support rod 1-1, an auxiliary support rod 1-2, a transverse circular fixing rod 1-3 and the like, wherein the rod bodies are cylindrical; the cylindrical rod body is small in wind power, damage to the tower in case of strong wind is relieved to a certain extent, and the service life is prolonged. In addition, the mutual connection mode among the main support rod 1-1, the auxiliary support rod 1-2, the transverse circular fixing rod 1-3, the top disc 1-4, the bottom disc 1-5 and the triangular fixing frame 1-7 also aims to increase the stability, and the connection mode is connected according to a triangle and a circle, so that the stability of the whole power generation device tower is improved to a certain extent.
As shown in fig. 5, the blade rotating module 2 includes a rotating blade 2-1, a main circular fixing rod 2-2, an auxiliary circular fixing rod 2-3, and a main fixing disk 2-4. The four rotating fan blades 2-1 are spirally raised in an obliquely upward 60-degree anticlockwise direction at equal intervals, the number of rising turns is 5, the distance between every two adjacent turns is gradually increased from bottom to top and is respectively 10cm,20cm,30cm and 40cm, the pitch is gradually increased when the four rotating fan blades are spirally raised, the pitch difference between every two adjacent turns is 20cm, and the radiuses of five spiral turns from bottom to top are respectively 40cm,60cm,80cm and 100 cm. The four rotating fan blades are spirally connected with the main rotating rod body 4-1, the upper ends of the four rotating fan blades are connected with the main circular fixing rod 2-2, the lower ends of the four rotating fan blades are connected with the auxiliary circular fixing rod 2-3, and the screw pitches of the four rotating fan blades 2-1 are gradually increased along with spiral rising. The main circular fixing rod 2-2 and the auxiliary circular fixing rod 2-3 are respectively positioned at the upper end and the lower end of the rotating fan blade 2-1 and connect the four rotating fan blades, so that the stability of the rotating fan blades is improved. The main fixed disc 2-4 is coaxially fixed with the main rotating rod body 4-1 through the main bearing 4-3, so that the main rotating rod is prevented from swinging in the horizontal direction, and the stability of the main rotating rod is improved.
As shown in fig. 6 to 9, the fan blade rotation module protection device 7 includes an auxiliary fixing disk 3-1, a disk fixing buckle 3-2, an auxiliary disk cylindrical fixing column 3-3, a cross fixing frame 3-4, a cross fixing frame bearing 4-7, a cylindrical fixing column 3-6, a wind energy rotation gear 3-7, a generator rotation gear 3-8, a gear fixing disk 3-9, a rotation generator box 3-5, a gear fixing bearing 3-10, a main rotation rod body 4-1, a rotation vertical support rod 4-2, a main bearing 4-3, an auxiliary bearing 4-4, an inclined support rod 4-5 and a transverse circular fixing rod 4-6. The fan blade rotating module protecting device 7 is positioned at the top end of a disc 5-3 of the solar panel module 3 and the bottom end of the fan blade rotating module 2, and is fixed with a main rotating rod body 4-1 to ensure that the main rotating rod body 4-1 cannot horizontally shake; the main rotating rod body 4-1 is connected with the main bearing 4-3, vertically inserted into the main fixed disc 2-4 and capable of rotating freely, the main rotating rod body is the core of the fan blade rotating module 2, and the fan blade rotating module 2 and the fan blade rotating module protecting device 7 are built by depending on the main rotating rod body 4-1; the two auxiliary fixed disks 3-1 are connected through eight auxiliary disk cylindrical fixed columns 3-3 and are connected with the main rotating rod body 4-1 through auxiliary bearings 4-4; the four disc fixing buckles 3-2 are circumferentially arrayed around the auxiliary fixing disc 3-1, one side of each disc fixing buckle is connected with the two auxiliary fixing discs 3-1, and the other side of each disc fixing buckle is connected with the inclined supporting rod 4-6; one side of the cross fixing frame 3-4 is connected with the main rotating rod body 4-1 through a cross fixing frame bearing 4-7, the other side of the cross fixing frame is connected with the gear fixing disc 3-9 through four cylindrical fixing columns 3-6, and when the main rotating rod body 4-1 rotates, the cross fixing frame 3-4 fixes the gear fixing disc 3-9; the four inclined support rods 4-5 are circumferentially arrayed around the auxiliary fixed disk 3-1, the upper ends of the four inclined support rods are connected with the auxiliary fixed disk 3-1 through a disk fixing buckle 3-2, and the lower ends of the four inclined support rods are connected with the bottom of the protective shell of the wind energy device to support the auxiliary fixed disk; three transverse circular fixing rods 4-6 are arrayed at equal intervals along the vertical direction, and four inclined supporting rods 4-5 are connected and fixed; the wind energy device protective shell is fixed around the rotary forwarding motor box 3-5 and is connected with the main fixed disc 2-4 through four rotary vertical supporting rods 4-2; the upper end of the gear fixing disc 4-6 is connected with the cross fixing frame 3-4 through four cylindrical fixing columns 3-6, the side face of the gear fixing disc is connected with the generator rotating gear 3-8 through the gear fixing bearing 3-10, the wind energy rotating gear 3-7 and the generator rotating gear 3-8 are limited in the same plane, the failure rate is reduced, and the power generation stability of the fan blade rotating module is improved; a rotary generator is arranged in the rotary generator box 3-5, is upwards connected with a wind energy rotary gear 3-7 at the lower part of the main rotary rod body 4-1 through a generator rotary gear 3-8, and is downwards connected with an electric power storage and energy storage module 6; the main rotating rod drives the wind energy rotating gears 3-7 to rotate, and the generator rotating gears 3-8 are matched with the wind energy rotating gears 3-7 to further drive the rotating generator to generate electricity.
As shown in fig. 10, the solar panel module 3 includes a solar panel 5-1, a solar panel vertical support frame 5-2, a disc 5-3, a hexagonal solar panel fixing frame 5-4 and a groove 5-5. The solar panels 5-1 are 6 inclined angles 30 degrees relative to the horizontal plane and are arranged around the solar panel fixing frame 5-4 in a circumferential array mode, the top ends of the solar panels are respectively superposed on six sides of the hexagonal solar panel fixing frame 5-4, the lower ends of the solar panels are connected with the discs 5-3, the solar panels form thirty-degree inclined angles with the horizontal plane and are circumferentially arrayed around the generator box and are in an inclined state, and the 30-degree inclined angles enable the solar panels 5-1 to receive solar energy without being greatly influenced along with the rising and falling of the sun, so that the solar energy can be received to the maximum degree, and the utilization rate of the solar energy is maximized; the upper ends of the 6 solar panel vertical supporting frames 5-2 are connected with the solar panel 5-1, and the lower ends of the 6 solar panel vertical supporting frames are fixed on the circular disc 5-3, so that the stability of the solar panel is improved; the upper end of the disc 5-3 is connected with a fan blade rotation protection device 7, and the lower end of the disc is connected with the supporting structure module 1 through a vertical supporting frame and a transverse supporting frame; the hexagonal solar panel fixing frame 5-4 is downwards connected with the fan blade rotation protection device 7, the side face of the hexagonal solar panel fixing frame is connected with 6 solar panels 5-1, and the hexagonal solar panel fixing frame 5-4 is located at the upper end of the fan blade rotation protection device 7 and used for fixing six solar panels; the grooves 5-5 are arranged above the disc 5-3 and are in a circumferential array, so that accumulated water and accumulated snow cannot accumulate on the device in rainy or snowy days, and the stability of the tower is improved.
As shown in fig. 11 to 14, the fitness equipment turntable module 4 includes a circular turntable 6-1, a turntable fixing frame 6-2, a turntable rotating rod 6-3, a turntable driving wheel 6-4, a turntable triangular supporting frame 6-5, a wheel rotating rod 7-1, a wheel triangular supporting frame 7-2, a dodecagon fixing seat 7-3, a pedal 7-4, a wheel main fixing rod 7-5, a wheel circular fixing frame 7-6, a wheel vertical supporting rod 7-7, a turntable driving wheel 7-8, a first rotary generator 8-1, a second rotary generator 8-2, a first rotary generator driving wheel 8-3, a second rotary generator driving wheel 8-4, a first conveyor belt 8-5 and a second conveyor belt 8-6. The circular turntable 6-1 is connected with a turntable fixing frame 6-2 through three cylindrical supporting seats, and the center of the turntable fixing frame 6-2 is connected with a fixing block at the top of a rotating rod of the turntable; the rotary table rotating rod 6-3 is positioned at the core position of the rotary table module of the fitness equipment, other devices of the rotary table module of the fitness equipment all depend on the rotary table rotating rod, the right end of the rotary table rotating rod is connected with a rotary table fixing frame 6-2 through a fixing block, the left end of the rotary table rotating rod is connected with a first conveyor belt 8-5 through a rotary table driving wheel 6-4, the middle of the rotary table rotating rod is connected with a rotary table triangular support frame 6-5 through a bearing, a circular rotary table 6-1 is rotated to drive the rotary table rotating rod 6-3 to rotate, and further drive the rotary table driving wheel 6-4 to move, and the rotary table driving wheel 6-4 is matched with a first rotary generator driving wheel 8-3 through the first conveyor belt 8-5, so that a first rotary generator 8-1 is driven to generate electricity; the top of the turntable triangular support frame 6-5 is connected with a turntable rotating rod 6-3 through a bearing, and the bottom of the turntable triangular support frame is positioned on the ground and supports the turntable rotating rod 6-3; the rotating wheel rotating rod 7-1 is the structural core of the rotating wheel module 5 of the body-building equipment, other structures and devices of the rotating wheel module 5 of the body-building equipment are all established by the rotating wheel rotating rod 7-1, the left end is connected with the second conveying belt 8-6 through a rotating wheel driving wheel 7-8, the middle part is connected with a rotating wheel triangular support frame 7-2 through a bearing, and the other end is connected with the dodecagon fixing seat 7-3 through a bearing; the left end of the dodecagon fixing seat 7-3 is coaxially fixed at one end of the rotating wheel rotating rod 7-1 through a bearing, and the right end of the dodecagon fixing seat is connected with the rotating wheel main fixing rod 7-5 through the bearing; the 12 rotating wheel vertical supporting rods 7-7 are circumferentially arrayed on the side face of the dodecagon fixed seat 7-3; the 12 rotating wheel vertical supporting rods are fixed by the rotating wheel circular fixing frame, the stability of the rotating wheel is improved, the rotating wheel main supporting rod 7-5 is held, the rotating wheel rotating rod 7-1 is driven to rotate by stepping on the pedal 7-4, the second conveying belt 8-6 is driven by the rotating wheel driving wheel 7-8, and finally the second rotating generator driving wheel 8-4 is driven to rotate, so that the second rotating generator 8-2 generates electricity. The first rotary generator 8-1 is positioned in the first rotary generator box and positioned at the upper end of a disc 1-4 at the top of the supporting structure module 1, one end of the first rotary generator is connected with a rotary table driving wheel 6-4 at the bottom of a rotary table rotating rod 6-3 through a first conveyor belt 8-5 by a first rotary generator driving wheel 8-2, and the first rotary generator driving wheel is upwards connected with a power generation device platform 1-6 of the electric storage energy storage module 6; the second rotary generator 8-2 is positioned in the second rotary generator box and positioned at the upper end of a disc 1-4 at the top of the supporting structure module 1, one end of the second rotary generator is connected with a rotating wheel driving wheel 7-8 at the bottom of a rotating wheel rotating rod 7-8 through a second conveyor belt 8-6 by a second rotary generator driving wheel 8-4, and the second rotary generator driving wheel is upwards connected with a power generation device platform 1-6 of the electric storage energy storage module 6.
As shown in fig. 1, 2 and 10, the electric storage energy storage module 6 is coaxially fixed at the lower part of a disc 5-3 of the solar panel module 3, the upper end of the electric storage energy storage module is connected with a rotary generator box 3-5 of the fan blade rotation protection device 7 through the disc 5-3, the lower end of the electric storage energy storage module is connected with a first rotary generator 8-1 of the body-building equipment turntable module 4 and a second rotary generator 8-2 of the body-building equipment turning wheel module 5, and then is connected with the electric storage energy storage box 1-9 through a vertical support rod 1-8; the storage battery is arranged in the storage energy storage box 1-9 and fixed at the upper end of the disc 1-5 at the bottom of the support structure module 1, and the upper end is connected with the power generation device platform 1-6 through the vertical support rod 1-8. The electric energy storage module 6 is positioned in the middle of all the power generation modules to receive electric energy more conveniently.
Nothing in this specification is said to apply to the prior art.
It should be emphasized that the embodiments described herein are illustrative rather than restrictive, and thus the present invention is not limited to the embodiments described in the detailed description, but also includes other embodiments that can be derived from the technical solutions of the present invention by those skilled in the art.
Claims (2)
1. The utility model provides a wind energy solar energy and body-building apparatus combined power generation device that park was used which characterized in that: the device comprises a supporting structure module, a fan blade rotating protection device, a solar panel module, a fitness equipment module and an electric power storage and energy storage module; the fan blade rotation module and the fan blade rotation protection device are sequentially arranged at the upper end of the supporting structure module from top to bottom, and the solar panel module is arranged on the upper surface of the fan blade rotation protection device; the fitness equipment module is fixed around the bottom of the support structure module; the electric power storage and energy storage module is arranged below the solar panel module; the fan blade rotating module, the solar panel module and the fitness equipment module are connected with the electric power storage and energy storage module and store the generated electric energy in the electric power storage and energy storage module;
the supporting structure module comprises a main supporting rod, three auxiliary supporting rods, four transverse circular fixing rods, a top disc, a bottom disc and four triangular fixing frames; the upper end of the main support rod is coaxially fixed at the center of the top disc, and the lower end of the main support rod is inserted into and fixed with the bottom disc; the upper ends of the three auxiliary support rods are arranged on the periphery of the main support rod in a circumferential array and are connected with the top disc, and the lower ends of the three auxiliary support rods are downwards inserted into the bottom disc and fixed; the four transverse round fixed rods are transversely arranged around the auxiliary support rod body and connect the three auxiliary support rods; the upper end of the top disc supports the solar panel module, and the lower end of the top disc is connected with a main supporting rod and three auxiliary supporting rods in a circumferential array; the upper end of the bottom disc is connected with a main supporting rod, three auxiliary supporting rods and an electric storage and energy storage module; the four triangular fixing frames are arranged around the main supporting rod, the upper ends of the triangular fixing frames are connected with the main supporting rod, and the lower ends of the triangular fixing frames are connected with the transverse round supporting rod;
the fan blade rotating module comprises four rotating fan blades, a main circular fixing rod, an auxiliary circular fixing rod and a main fixing disk, and the fan blade rotating module protecting device comprises two auxiliary fixing disks, four disk fixing buckles, auxiliary disk cylindrical fixing columns, a cross fixing frame bearing, a cylindrical fixing column, a wind energy rotating gear, a generator rotating gear, a gear fixing disk, a rotating and forwarding motor box, a gear fixing bearing, a main rotating rod body, four rotating vertical supporting rods, a main bearing, an auxiliary bearing, four inclined supporting rods and three transverse circular fixing rods; the four rotating fan blades are of an equidistant spiral ascending structure and are spirally connected with the main rotating rod body, the upper ends of the four rotating fan blades are connected with the main circular fixing rod, and the lower ends of the four rotating fan blades are connected with the auxiliary circular fixing rod; the main rotating rod body is connected with the main bearing, is vertically inserted into the main fixed disc and can rotate freely; the main fixed disc is connected with the main rotating rod body through a main bearing; the upper ends of the four rotating vertical supporting rods are connected with the main fixed disc and are in a cylindrical array, and the lower ends of the four rotating vertical supporting rods are connected with the protective shell of the wind energy device and support the main fixed disc; the two auxiliary fixed disks are connected through eight auxiliary disk cylindrical fixed columns and are connected with the main rotating rod body through auxiliary bearings; the four disk fixing buckles are circumferentially arrayed around the auxiliary fixing disks, one surface of each disk fixing buckle is connected with the two auxiliary fixing disks, and the other surface of each disk fixing buckle is connected with the inclined supporting rod; one side of the cross fixing frame is connected with the main rotating rod body through a cross fixing frame bearing, and the other side of the cross fixing frame is connected with the gear fixing disc through four cylindrical fixing columns; the four inclined support rods are circumferentially arrayed around the auxiliary fixed disk, the upper ends of the four inclined support rods are connected with the auxiliary fixed disk through the disk fixing buckles, the lower ends of the four inclined support rods are connected with the bottom of the protective shell of the wind energy device, and the auxiliary fixed disk is supported; the three transverse round fixing rods connect the four inclined supporting rods to fix the inclined supporting rods; the wind energy device protective shell is fixed around the rotating and forwarding motor box and is connected with the main fixed disc through four rotating vertical supporting rods; the upper end of the gear fixing disc is connected with the cross fixing frame through four cylindrical fixing columns, and the side face of the gear fixing disc is connected with a generator rotating gear through a gear fixing bearing; the rotary generator is arranged in the rotary forwarding motor box, is upwards connected with the wind energy rotary gear at the lower part of the main rotary rod body through a generator rotary gear, and is downwards connected with the electric power storage and energy storage module; the four rotating fan blades spirally rise along the obliquely upward and anticlockwise directions at equal intervals;
the solar panel module is arranged on the upper surface of the fan blade rotation protection device; the solar panel module comprises six solar panels, six solar panel vertical supporting frames, a disc, a hexagonal solar panel fixing frame, a groove and a solar power generation box; the six solar panels and the horizontal plane form a certain inclination angle and are arranged around the generator box in a circumferential array mode, the upper ends of the six solar panels are connected with the hexagonal solar panel fixing frame, and the lower ends of the six solar panels are connected with the disc; the upper ends of the six solar panel vertical supporting frames are connected with the solar panels, and the lower ends of the six solar panel vertical supporting frames are fixed on the circular disc; the upper end of the disc is connected with the generator box, and the lower end of the disc is connected with the supporting structure module through the vertical supporting frame and the transverse supporting frame; the hexagonal solar panel fixing frame is positioned at the upper end of the generator box and used for fixing six solar panels; the grooves are positioned at the upper end of the disc and are distributed in a circumferential manner; the solar panel and the horizontal plane form an inclination angle of 30 degrees;
the fitness equipment module is fixed around the bottom of the support structure module; the fitness equipment comprises a circular turntable, a turntable fixing frame, a turntable rotating rod, a turntable triangular supporting frame, a turntable driving wheel, a first rotary generator, a first conveying belt, a rotating wheel rotating rod, a rotating wheel main supporting rod, a dodecagon fixing seat, a pedal, a rotating wheel triangular supporting frame, a rotating wheel circular fixing rod, a rotating wheel vertical supporting rod, a rotating wheel driving wheel, a second conveying belt and a second rotary generator; the circular turntable is connected with the turntable fixing frame through three cylindrical supporting seats; the center of the rotary table fixing frame is connected with the top of the rotary rod of the rotary table; the top end of the rotary rod of the rotary disc is connected with the rotary disc fixing frame, the bottom of the rotary rod of the rotary disc is connected with the first conveying belt through a rotary disc driving wheel, and the middle part of the rotary rod of the rotary disc is connected with the rotary disc triangular supporting frame through a bearing; the top of the turntable triangular support frame is connected with a turntable rotating rod through a bearing to support the circular turntable; the turntable driving wheel is positioned at the bottom of the turntable rotating rod and drives the driving wheel of the first rotary generator to rotate through the first conveying belt; the first rotary generator is arranged in the first rotary generator box and positioned at the upper end of the disc at the top of the supporting structure module, and is connected with the rotary table driving wheel at the bottom of the rotary table rotating rod through a first conveyor belt by a first rotary generator driving wheel and is upwards connected with the electric storage and energy storage module; one end of the rotating wheel rotating rod is connected with the rotating wheel conveying wheel, the other end of the rotating wheel rotating rod is connected with the dodecagon fixing seat through a bearing, the middle part of the rotating wheel rotating rod is connected with the turntable triangular supporting frame through a bearing, and the rotating wheel rotating rod supports the rotating wheel main body and is a core component of the fitness rotating wheel; the top of the rotating wheel triangular support frame is connected with a rotating rod of the rotating wheel through a bearing to support the main body of the rotating wheel; the left side of the center of the dodecagon fixing seat is connected with a rotating rod of a rotating wheel through a bearing, the right side of the dodecagon fixing seat is connected with a main supporting rod of the rotating wheel through a bearing, and the side surface of the dodecagon fixing seat is connected with twelve vertical supporting rods of the rotating wheel; twelve pedals are respectively connected with twelve rotating wheel vertical supporting rods; the two rotary wheel circular fixed rods are respectively used for connecting twelve rotary wheel vertical supporting rods; the rotating wheel driving wheel is positioned at the bottom of the rotating rod of the rotating wheel and drives the driving wheel of the second rotary generator to rotate through the second conveying belt; the second rotary generator is arranged in the second rotary generator box and positioned at the upper end of the disc at the top of the supporting structure module, and is connected with the rotating wheel driving wheel at the bottom of the rotating wheel rotating rod through a second conveyor belt by a second rotary generator driving wheel and is upwards connected with the electric storage and energy storage module;
the electric power storage and energy storage module is arranged below the solar panel module; the electric power storage and energy storage module comprises a power generation device platform and an electric power storage and energy storage box; the power generation device platform is coaxially fixed at the lower part of the solar panel module disc, the upper end of the power generation device platform is connected with the rotary generator of the fan blade rotating module through the disc, and the lower end of the power generation device platform is connected with the rotary generator of the body-building module and is connected with the electric storage energy storage box through the vertical supporting rod; and a storage battery is arranged in the electric storage energy storage box and is fixed at the upper end of the disc at the bottom of the supporting structure module, and the upper end of the disc is connected with the power generation device protection platform through a vertical supporting rod.
2. The combined wind, solar and fitness equipment power generation device for parks as claimed in claim 1, wherein: the spiral rising angle of the four rotary fan blades is 60 degrees, the rising turns are 5 turns, the distance between every two adjacent turns is gradually increased from bottom to top and is respectively 10cm,20cm,30cm and 40cm, the screw pitch is gradually increased when the four rotary fan blades spirally rise, the screw pitch difference between every two adjacent turns is 20cm, and the radiuses of five spiral turns from bottom to top are respectively 40cm,60cm,80cm and 100 cm; the six solar panels form an inclination angle of thirty degrees with the horizontal plane.
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