Multi-paddle wind driven generator
By adopting the structural design of a multi-pad wind turbine in a wind turbine, and connecting multiple wind paddle groups with a transmission mechanism to achieve qualitative change in wind power, solving the problem of low efficiency of existing wind turbines and achieving more efficient wind energy utilization.
Patent Information
- Application Number
- CN202510449708.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2025-07-04
AI Technical Summary
The existing wind turbines are inefficient, and the single blade, single air paddle group, and single body structure leads to insufficient utilization of wind power resources.
Multi-pad wind turbines are adopted to install transmission mechanisms and wind paddle groups on the rack body to achieve the connection and quantitative change of multiple wind paddle groups, and multi-layer organizational structures are used to overcome the resistance of the generator and obtain greater wind power resources.
It improves wind power generation efficiency, can make more efficient use of wind energy resources, realize qualitative change of wind power, and form a joint power generation of machine groups.
Smart Images

Figure CN120251439A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of wind power generation machinery for obtaining wind resources of natural resources in nature and wind power generation; Background Art
[0002] The currently known wind turbine technology is a single-blade, single-wind paddle group, single-body wind turbine without a bracket and without a network transmission mechanism organization connected into a group. It has a small wind power acquisition and low efficiency. Summary of the Invention
[0003] The present invention is a publicly disclosed (multi-paddle wind turbine) and (multi-paddle machine);
[0004] A multi-paddle wind turbine uses multiple wind blades, multiple wind paddles, multiple wind paddle groups, and multiple multi-paddle machines in a multi-layer organizational structure. Through the relay connection and stacking synthesis of the transmission mechanism on a single frame body and a ground frame body, a method of creating the quality of wind power by fission of quantity is used to convert wind energy into mechanical energy to drive a generator for power generation. It is composed of a frame body, a transmission mechanism, a wind paddle group, and a generator. A multi-paddle wind turbine is both a single multi-paddle machine and a body formed by continuously connecting a large number of multi-paddle machines through a transmission organization on the ground frame to form a group;
[0005] The transmission mechanism and the wind paddle group components are installed on the frame body of the multi-paddle wind turbine. The transmission mechanism connects multiple wind paddle groups together on the frame body. The connection of the wind paddle group through the transmission mechanism on the frame body establishes a quantitative change. The quantitative change of the wind paddle group creates a qualitative change in the acquisition of wind power. A greater wind power resource is obtained in the way that many hands make light work. This way of continuing to connect through the transmission mechanism relying on the frame is the condition for forming a machine group. It is a mechanical principle method that uses the combined force of the multi-layer organizational structures of many wind blades, wind paddles, wind paddle groups, and multi-paddle machines to overcome the resistance during the operation of the generator for power generation; and a multi-paddle machine concept that can obtain a qualitative change in wind power through a general quantitative change is established.
[0006] In order to overcome the deficiencies of the previous prior art that only focuses on one aspect, the present invention provides a multi-paddle wind turbine that can capture more wind power with high power. The difference between the present invention and the previous existing wind turbines is that the previous wind turbines obtain wind power by means of a large model, while the wind turbines of the present invention obtain wind power by means of the combination of multiple blades, multiple paddles, multiple groups, and multiple machines in a multi-layer organizational structure. Practice has proved that the concept, technology, structure, principle, and function of the multi-paddle wind turbine are correct, and it also reveals that many resources and energies are not only underground but also more in the space above the ground.
[0007] A multi-blade wind turbine is composed of technical method principles and ideological method principles; the technical method principles prove the establishment of the ideological method principle that the multi-blade wind turbine achieves qualitative change in wind power through quantitative change in mechanical organizational structure; the ideological method principle guides the establishment of the technical method principle; it is a thing that combines a technical form with ideology and can obtain wind power; it is the ideological condition for achieving various multi-blade machine technologies.
[0008] A multi-blade wind turbine belongs to the original multi-blade machine technology series, is composed of multiple organizational structures made of metal materials, and is a machine that obtains qualitative change in wind power (quality) through quantitative change of wind blades under the guidance of the multi-blade machine ideological direction.
[0009] The multi-blade wind turbine is composed of a hollow column, a turntable, a rotating movable frame, a transmission mechanism, a wind blade group mechanism, and a generator.
[0010] The transmission mechanism and the wind blade group components are installed on the frame body; the transmission mechanism connects multiple wind blade groups into a whole on the frame body; the wind blade group realizes the effect of obtaining qualitative change in wind power through quantitative change through the connection of the transmission mechanism on the frame body.
[0011] The frame body part: includes a column fixed frame, a turntable, a frame rotating movable frame, and a ground frame: the frame movable frame is installed on the fixed frame column through the turntable mechanism, and the column is installed on the ground frame body.
[0012] 1. Column: The column is a hollow column, which is a fixed frame body. The frame movable frame is installed above through the turntable mechanism, and the lower end is buried underground and pulled by an anchor. Multiple bearing discs for installing the vertical shaft are installed at intervals on the inner wall of the column; a horizontal and vertical direction-changing gear chamber is installed below; multiple annular turntable inner circles are provided at intervals on the outer wall of the column, and the inner circles are welded and fixed to the column as a whole through support blocks. The outer circle of the frame-shaped turntable carries multiple vertical and horizontal bearings and is installed on the inner circle of the annular track.
[0013] 2. Turntable: The turntable consists of a ring-shaped fixed inner disk and a frame movable outer disk, and is a connecting joint mechanism between the fixed frame body and the movable frame body. It plays a role in horizontal angular rotation between the fixed column frame body and the frame movable frame body. The turntable is composed of a ring-shaped inner circle fixed on the outer wall of the column, a frame-shaped outer circle, four vertical bearings and four horizontal bearings. The four vertical bearings are respectively installed in the middle of the longitudinal and transverse beams at the front, back, left and right of the frame turntable, and the four horizontal bearings are respectively installed at the corners of the frame turntable. The frame turntable with eight vertical and horizontal bearings is installed on the annular track of the inner circle of the column through bearings and freely rotates horizontally on the inner circle annular track. The front and rear ends of the frame turntable are respectively installed with cross beams composed of the front cross beam and the rear cross beam of the movable frame. The distance between the rear end of the turntable and the installed rear cross beam is slightly longer than that of the front beam at the front end from the column. The turntable mechanism connects the fixed column frame and the frame movable frame, and the frame movable frame carries the transmission mechanism and the wind blade group to make horizontal angular changes on the fixed column frame.
[0014] 3. Rotating movable frame: The frame consists of a turntable, a front cross beam, a rear cross beam, small beams, vertical beams, tie rods, and grid pedals. The movable frame composed of the front beam and the rear beam jointly supports the transmission mechanism and the wind blade group components on the outer circle of the turntable, enabling the transmission mechanism and the wind blade group to work on the movable frame. Small beams and grid pedals are installed between the front beam and the rear beam, and vertical beams are installed between the upper and lower layers of small beams. The lower layer of small beams is obliquely pulled by tie rods to the outer circle of the upper layer of frame turntable. The middle of the movable frame is installed on the turntable and carries the transmission mechanism and the wind blade group components to freely rotate horizontally following the wind direction. The front cross beam of the movable frame is closer to the column on the turntable than the rear beam. Transmission gear chambers are provided at the outer ends and the middle of the upper and lower cross beams in the vertical, horizontal, front and rear directions. The column, turntable, and movable frame constitute the frame body of the multi-blade wind turbine, which is the basic condition for the multi-blade machine.
[0015] Transmission mechanism part: It includes the longitudinal, transverse, and vertical transmissions on a single multi-blade body and the longitudinal and transverse transmissions on the ground plane. It also includes shaft transmission, belt transmission, hydraulic transmission, or a combination of shaft and liquid transmission. The transmission mechanism organizes the wind blades, wind blades, wind blade groups, and multi-blade machines on the frame body in series to achieve the quantitative fission of the organizational structure and the quality of wind power.
[0016] 4. Transmission mechanism: The transmission mechanism consists of a gear chamber housing, a longitudinal axis of the wind blade group, a variable-direction short transverse axis, a long connecting transverse axis, a vertical axis between the upper and lower cross beams, a vertical axis inside the column, a transverse axis of the lower-end gear chamber, bearings, bevel gear sets, short shafts, and grease. The transmission organization groups the wind blade groups on a single multi-blade machine together and groups multiple multi-blade machines together on the ground plane.
[0017] Gear chamber: It is formed by buckling two channel steels face to face and fastened by bolts. There is a bearing seat inside. At the joint of the gear chamber and the cross beam, there is a fastening seat, and the gear chamber is fastened to the front and rear cross beams by bolts. Inside the gear chamber, there are installed a bearing seat, bearings, a bevel gear set and corresponding variable-direction long and short transmission shafts. Each shaft in the gear chamber makes variable-direction transmissions in the up and down, left and right, front and back directions under the action of the bevel gears. The gear chamber is communicated and connected with the adjacent gear chamber through a long horizontal shaft on the movable frame, realizing the combined quantitative change of the wind paddle group on the movable frame;
[0018] The transmission shaft has a long hollow connecting shaft and a variable-direction short solid shaft. The hollow shaft is sleeved on the solid shaft. At the joint of the end of each shaft, there is a connecting pin hole, which is connected by a cotter pin and acts as a coupling;
[0019] Longitudinal shaft of the wind paddle group: There are bevel gears and bearings on the shaft. Fastening screws are provided at the front and rear ends of the shaft. The longitudinal shaft of the wind paddle group is installed on the bearing seat provided inside the gear chamber, and the wind paddle groups are respectively installed at the front and rear ends of the longitudinal shaft of the wind paddle group;
[0020] Horizontal shaft on the cross beam: The horizontal shaft is a tubular hollow long horizontal shaft connecting two adjacent gear chambers. There are pin holes for connecting the solid short shafts of the gear chambers at both ends of the shaft. The horizontal shaft connects the shaft of the wind paddle group gear chambers of two adjacent cross beams on the cross beam;
[0021] Vertical shaft between the upper and lower cross beams: Under the variable-direction transmission of the middle gear chamber, it connects the horizontal shafts on the upper, middle and lower cross beams together, realizing the power combination of the wind paddle group outside the column;
[0022] Vertical shaft inside the column and the horizontal shaft below: The vertical shaft inside the column transmits the wind power source obtained on the movable frame outside the column to the vertical shaft inside the column through the middle variable-direction gear chamber at the upper end. The vertical transmission shaft inside the column is connected to the horizontal transmission shaft inside the gear chamber below with the help of a bearing disc. The horizontal shaft drives a pulley and a generator at the outer end of the column or connects adjacent multi-paddle wind turbines to form a group of multi-paddle mechanisms;
[0023] Bearings and grease: Bearings and grease play a role in lubricating the bevel gear set and bearings flexibly in the machine;
[0024] The transmission mechanism is a condition for constructing a multi-blade wind turbine and an inevitable requirement for the establishment of multi-blade wind power generation technology and concepts. It includes the transmission organization on a single frame body unit and the transmission organization on the ground frame body. It performs transmission tasks on the frame body in the front-back, left-right, and up-down directions. It is a necessary condition and determining factor for realizing the idea and technology of obtaining qualitative changes in wind power through multi-level quantitative changes in multi-blade machines, and is the basis for the structural effect of a single multi-blade machine and the scale of the machine group. The transmission mechanism enables multiple levels of organizational structures on a single multi-blade machine and the frame body on the ground to be connected in a relay, stacked, and superimposed to form the principle, function, and effect of quantitative fission, thereby obtaining the qualitative benefits of wind power. The relay connection of the transmission mechanism organization to the quantitative fission of multiple levels of organizational structures is an important factor indispensable for obtaining wind energy resources.
[0025] Basic component part: including wind blades, wind paddles, wind paddle groups, multi-blade machine units: They are the conditions for realizing the fission of multi-level organizational structures:
[0026] On the frame body, wind blades are organized by wind paddles, wind paddles are organized by wind paddle groups, wind paddle groups are organized by multi-blade machines, and multi-blade machines are organized by a multi-blade machine group through the connection of the transmission mechanism on the ground frame body;
[0027] 5. Wind paddle group mechanism: The wind paddle group is composed of a wind paddle group disk, wind paddle arms, wind blades, and support springs and tie rods. The wind paddle group is installed at the front and rear ends of the longitudinal axis of the wind paddle group and is fixed by bolts at the ends. The wind paddle group disk is composed of an L-shaped front disk and a flat rear disk. The wind paddle arms are installed between the front and rear disks and are fixed by bolts. The wind paddle arms connect and transfer the wind power obtained by the wind blades to the wind paddle group disk in the method of the lever structure principle. Triangular spring seats, annular buckle seats, and tie rod seat rings for installing the support of the wind blades are provided on the circular tube-shaped wind paddle arms. Two wind blades with a large inner and small outer diameter are strung on the wind paddle arms together with the tie rod seats. Supports and springs are provided on the back of the wind blades. Tie rod seats are provided on the wind paddle arms between the two blades. The tie rods are pulled at the front end of the L-shaped disk. Adjacent wind paddle arms in the same group are pulled by tie rods or wires. The wind paddle group should be closer to the column at the front end of the gear chamber and farther from the column at the rear end of the gear chamber. The number of wind paddle groups on the front row surface of the movable frame crossbeam is less than that on the rear row surface. Therefore, the number of wind paddle groups on the rear row surface should be more than that on the front row surface, aiming at the need to correct the wind direction. The wind paddle group is installed at the outer end and the middle of the movable frame crossbeam at the front and rear ends of the gear chamber. The wind paddle group and the wind blades obtain different wind powers due to their different positions in the upper-lower and front-back areas on the movable frame. Therefore, the sizes of the wind blades are also slightly different. The wind blades above the movable frame are smaller than those below the movable frame, and the wind blades in front of the movable frame are smaller than those behind the movable frame. The wind blades at the outer end of the wind paddle arms are smaller than those in the middle of the wind paddle arms. Therefore, the wind blades have differences in large, medium, small or large, small sizes on the movable frame. The wind paddle group transfers the wind power obtained by the wind blades to the generator installed on the ground through the connection and relay of the transmission mechanism on the movable frame.
[0028] A multi-blade wind turbine is characterized by the multi-blade machine concept: The multi-blade machine concept uses a large number of wind blades, wind paddles, wind paddle groups, and the multi-layer organizational structure of the multi-blade machine. Through the transmission mechanism, they are connected in series, stacked, and fissioned on the frame body to obtain the quality of wind power. The combined force overcomes the resistance during the operation of the generator to generate electricity. This is a mechanical principle method. The method principle of obtaining the quality of wind power through the quantitative change of the series multi-layer organizational structure of the transmission mechanism on the frame body is the basis for the establishment of the multi-blade machine concept. A generalizable multi-blade machine concept that obtains the qualitative change of wind power through quantitative change is established. The technical principle of the multi-blade wind turbine explains and proves that the quantitative change of the multi-blade wind turbine has achieved the establishment of the guiding function of the qualitative change of wind power. The multi-blade machine concept has established a development direction for obtaining wind energy resources.
[0029] Its beneficial effects:
[0030] On the frame body on the ground, a transmission mechanism and a large number of multi-blade wind turbines are installed through the connection of the transmission organization. On the frame body of the multi-blade wind turbine, a transmission mechanism and a wind paddle group component are installed. The transmission mechanism connects multiple wind paddle groups together on the frame body. The wind paddle group establishes a quantitative change on the frame body through the connection of the transmission mechanism. The quantitative change of the wind paddle group creates a qualitative change in obtaining wind power, obtaining a larger wind power resource in the way that many hands make light work. This way of continuing to connect through the transmission mechanism relying on the frame is the condition for forming a machine group. It is a mechanical principle method that uses the combined force of the multi-layer organizational structure of a large number of wind blades, wind paddles, wind paddle groups, and multi-blade machines to overcome the resistance during the operation of the generator to generate electricity. The earth is jubilant and the world is happy. Description of the Drawings
[0032] Figure 1 It is a simple rear view schematic diagram of a single multi-blade wind turbine;
[0033] Figure 2 It is a schematic diagram of the turntable of the multi-blade wind turbine;
[0034] Figure 3 It is a bottom view schematic diagram of the frame movable frame of the multi-blade wind turbine;
[0035] Figure 4 It is a side view and rear view schematic diagram of the wind paddle group of the multi-blade wind turbine;
[0036] Figure 5 It is a schematic diagram of the transmission mechanism of the multi-blade wind turbine;
[0037] Figure 6 It is a bottom view of the gear chamber;
[0038] Figure 7 It is a side view and rear view of the wind blade;
[0039] According to Figures 1 to 7 the marked serial numbers for description;
[0040] 1. Wind paddle blade and support spring, 2. Column, 3. Frame turntable, 4. Cross beam, 5. Wind paddle arm, 6. Vertical beam, 7. Gear chamber, 8. Bevel gear set, 9. Bearing and bearing seat, 10. Horizontal shaft, 11. Vertical shaft, 12. Upright shaft, 13. Wind paddle group and disc, 14. Bearing disc, 15. Longitudinal axis of wind paddle group, 16. Small beam, 17. Inner circle of turntable, 18. Brake, 19. Pulley, 20. Coupling, 21. Horizontal bearing bracket, 22. Bearing shaft, 23. Tie rod, 24. Ground, 25. Generator. Specific implementation mode
[0041] The wind paddle blade 1 with a bracket and a spring is strung on the wind paddle arm 5, the wind paddle arm 5 is installed on the wind paddle group disc 13, the wind paddle group disc 13 is installed on the longitudinal axis 15 of the wind paddle group, the longitudinal axis 15 of the wind paddle group is installed on the gear chamber 7, the gear chamber 7 is installed on the cross beam 4 of the movable frame, the cross beam 4 of the movable frame is installed on the frame turntable 3, the frame turntable 3 is installed in the groove of the inner circle 17 of the turntable, the inner circle of the turntable is fixedly installed on the outer wall of the column 2 through a support block, and the column 2 carrying the turntable 3, the cross beam 4 of the movable frame and the components of the power transmission mechanism of the wind paddle group are buried and installed on the ground and fixed by guy anchors;
[0042] The wind power obtained by the wind paddle blade 1 is transmitted to the longitudinal axis 15 of the wind paddle group through the wind paddle arm 5. The longitudinal axis 15 of the wind paddle group is transmitted to the horizontal shaft 10 through the bevel gear 8. The horizontal shaft 10 transmits the power to the vertical shaft 11 through the bevel gear in the intermediate gear chamber. The vertical shaft 11 transmits the power to the upright shaft 12 in the column through the intermediate gear chamber of the upper cross beam. The upright shaft 12 transmits the power downward through the bearing disc 14 to the horizontal shaft in the gear chamber. The horizontal shaft protrudes outside the column below the column, and a pulley 19 is installed on the shaft. The pulley 19 drives the generator 25 through a belt. (1). It constitutes the power generation of a single unit; (2). The power transmission joint organization of multiple single multi-paddle machines through the power output holes below the column constitutes a multi-paddle wind power generator machine group for power generation. This multi-paddle wind power generation method creates the idea of multi-paddle wind power generation. The idea of multi-paddle machines proves the establishment of multi-paddle machine technology and ideas with multi-paddle machine technology as the material condition.
Claims
1. A multi-blade wind turbine consists of a frame body, a transmission mechanism, a wind blade group, and a generator: Numerous multi-blade wind turbines are connected and installed on the frame body on the ground through a transmission organization; on the frame body of the multi-blade wind turbine, a transmission mechanism and a wind blade group component are installed. The transmission mechanism connects multiple wind blade groups together on the frame body. The wind blade group establishes a quantitative change on the frame body through the connection of the transmission mechanism. The quantitative change of the wind blade group creates a qualitative change in obtaining wind power. In the way that many hands make light work, a greater wind power resource is obtained. This way of continuing to connect through the transmission mechanism relying on the frame is the condition for forming a cluster of machines. It is a mechanical principle method to obtain the quality of wind power by the quantity of a multi-layer organizational structure of numerous wind blades, wind paddles, wind blade groups, and multi-blade machines, and the combined force of the quality overcomes the resistance when the generator works to generate electricity; and a multi-blade machine thought that can be obtained by a general quantitative change to achieve a qualitative change in wind power is created.
2. A multi-blade wind turbine, characterized in that Frame body part: It includes a column-fixed frame, a turntable, a frame-rotating movable frame, and a ground frame body; the frame movable frame is installed on the columns of the fixed frame through a turntable mechanism, and the columns are installed on the ground frame body; (1) Column: The column is a hollow column, which is a fixed frame body. The upper part is installed with a frame movable frame through a turntable mechanism, and the lower end is buried underground and pulled by an anchor. Multiple bearing plates for installing the vertical shaft are installed at intervals on the inner wall of the column; a horizontal and vertical direction-changing gear chamber is installed below; multiple annular turntable inner circles are provided at intervals on the outer wall of the column, and the inner circles are welded and fixed to the column as a whole through support blocks. The outer circle of the frame-shaped turntable carries multiple vertical and horizontal bearings and is installed on the inner circle of the annular track; (2) Turntable: The turntable consists of a fixed inner disk and a movable outer disk, and it is a joint mechanism: It plays a role in horizontal rotation between the column-fixed frame body and the frame movable frame body. The turntable consists of an annular inner circle fixed on the outer wall of the column, a frame-shaped outer circle, four vertical bearings, and four horizontal bearings; the four vertical bearings are respectively installed in the middle of the longitudinal and transverse beams in the front, back, left, and right of the frame turntable, and the four horizontal bearings are respectively installed at the corners of the frame turntable. The frame-shaped turntable with eight vertical and horizontal bearings is installed on the annular track of the inner circle of the column through bearings and freely rotates horizontally on the inner circle annular track. The front and rear ends of the frame turntable are respectively installed with cross beams composed of the front cross beam and the rear cross beam of the movable frame. The distance between the rear end of the turntable and the installed rear cross beam is slightly longer than the distance from the front beam carried by the front end to the column. The turntable mechanism connects the column-fixed frame and the frame movable frame, and the frame movable frame carries the transmission mechanism and the wind blade group to make a horizontal angle change on the column-fixed frame; (3) Rotating the movable frame: The frame consists of a turntable, a front crossbeam, a rear crossbeam, small beams, vertical beams, tie rods, and grid pedals; the movable frame composed of the front beam and the rear beam jointly supports the transmission mechanism and the wind paddle group components on the outer circumference of the turntable, enabling the transmission mechanism and the wind paddle group to work on the movable frame; small beams and grid pedals are installed between the front beam and the rear beam, and vertical beams are installed between the upper and lower layers of small beams; the lower-layer small beam is obliquely pulled by a tie rod to the outer circumference of the upper-frame turntable; the middle of the movable frame is installed on the turntable and carries the transmission mechanism and the wind paddle group components to freely rotate horizontally following the wind direction. The front crossbeam of the movable frame is closer to the column on the turntable than the rear beam; at the outer ends and the middle of each upper and lower crossbeam, there are upper-lower, left-right, and front-back transmission gear chambers; the column, turntable, and movable frame constitute the frame body of the multi-paddle wind turbine, which is the basic condition for the multi-paddle machine.
3. A multi-blade wind turbine, characterized in that Part of the transmission mechanism: It includes the longitudinal, transverse, and vertical transmissions on a single multi-paddle body and the longitudinal and transverse transmissions on the ground plane; it also includes shaft transmission, belt transmission, hydraulic transmission, and shaft-belt-hydraulic hybrid transmission: The transmission mechanism is organized on the frame body to connect the wind paddle blades, wind paddles, wind paddle groups, and multi-paddle machines in series, realizing the quantitative fission of the organizational structure and the quality of wind power. (4) Transmission mechanism: The transmission mechanism consists of a gear chamber housing, a longitudinal axis of the wind paddle group, a short variable-direction transverse axis, a long connecting transverse axis, a vertical axis between the upper and lower crossbeams, a vertical axis inside the column, and a transverse axis of the lower-end gear chamber, bearings, bevel gear sets, short shafts, and grease; the transmission mechanism is organized and installed on the crossbeams, between the upper and lower crossbeams, and inside the column. Gear chamber: It is formed by buckling two channel steels face to face and fastened by bolts. There is a bearing seat inside. At the joint of the gear chamber and the crossbeam, there is a fastening seat and the gear chamber is fastened to the front and rear crossbeams by bolts. Inside the gear chamber, there are installed a bearing seat, bearings, bevel gear sets, and corresponding variable-direction long and short transmission shafts. The various shafts inside the gear chamber perform variable-direction transmissions in the up-down, left-right, and front-back directions under the action of bevel gears. The gear chamber is connected to the adjacent gear chamber through a long transverse axis on the movable frame, realizing the quantitative change of the wind paddle group on the movable frame. The transmission shafts include a long hollow connecting shaft and a short variable-direction solid shaft. The hollow shaft is sleeved on the solid shaft. At the joint of the end of each shaft, there is a connecting pin hole and is connected by a cotter pin and acts as a coupling. Longitudinal axis of the wind paddle group; there are bevel gears and bearings on the shaft, and fastening screws are provided at the front and rear ends of the shaft. The longitudinal axis of the wind paddle group is installed on the bearing seat provided inside the gear chamber, and the wind paddle groups are respectively installed at the front and rear ends of the longitudinal axis of the wind paddle group. Transverse axis on the crossbeam; the transverse axis is a long transverse axis connecting two gear chambers. There are pin holes for connecting the short shafts of the gear chambers at both ends of the axis. The transverse axis connects the shafts of two adjacent wind paddle group gear chambers on the crossbeam. Vertical axis between the upper and lower crossbeams; under the variable-direction transmission of the middle gear chamber, it connects the transverse axes on the upper, middle, and lower crossbeams, realizing the power combination of the wind paddle group outside the column. The vertical shaft inside the column and the horizontal shaft below; the vertical shaft inside the column transmits the wind power source obtained on the movable frame outside the column to the vertical shaft inside the column through the intermediate direction-changing gear chamber at the upper end. The vertical transmission shaft inside the column is connected to the horizontal transmission shaft in the gear chamber below with the help of a bearing disc. The horizontal shaft drives a pulley and a generator at the outer end outside the column or connects adjacent multi-blade wind turbines to form a group of multi-blade wind turbines. Bearings and grease; bearings and grease play a role in flexibly lubricating the bevel gear set and bearings in the machine. The transmission mechanism is a condition for forming a multi-blade wind turbine and an inevitable requirement for establishing the technology and concept of multi-blade wind power generation. It includes the transmission organization on a single frame body unit and the transmission organization on the ground frame body. It performs transmission tasks on the frame body in the front-back, left-right, and up-down directions. It is a necessary condition and determinant for realizing the idea and technology of obtaining a qualitative change in wind power through multi-level quantitative changes in a multi-blade machine and is the basis for the structural effect of establishing a single multi-blade machine and the scale of the machine group. The transmission mechanism enables relay connection, superposition, and stacking of multiple levels of organizational structures on a single multi-blade machine and the frame body on the ground to form the principle, function, and effect of quantitative fission and obtain the qualitative benefit of wind power. The relay connection of the transmission mechanism organization of multiple levels of organizational structures for quantitative fission is an important factor indispensable for obtaining wind energy resources.
4. A multi-blade wind turbine, characterized in that Basic component part: including wind blades, wind paddles, wind paddle groups, multi-blade machine units: They are conditions for realizing the fission of multi-level organizational structures. On the frame body, wind blades are organized by wind paddles, wind paddles are organized by wind paddle groups, wind paddle groups are organized by multi-blade machines, and multi-blade machines are organized by a multi-blade machine group through the connection of the transmission mechanism organization on the ground frame body. The transmission mechanism organization connects wind blades, wind paddles, wind paddle groups, and multi-blade machines in series on the frame body to realize the quantitative fission of organizational structures and the quality of wind power. (5), Wind paddle group mechanism: The wind paddle group consists of a wind paddle group disk, wind paddle arms, wind paddle blades, support springs, and tie rods; the wind paddle group is installed at the front and rear ends of the longitudinal axis of the wind paddle group in the gear chamber of the transmission mechanism and is fixed by bolts at the ends; the wind paddle group disk consists of a perpendicular front disk and a flat rear disk, the wind paddle arms are installed between the front and rear disks and fixed by bolts, and the wind paddle arms connect and transmit the wind force obtained by the wind paddle blades to the wind paddle group disk according to the principle of lever structure; triangular spring seats, annular snap seats, and tie rod seat rings for installing the support of the wind paddle blades are provided on the round tube-shaped wind paddle arms, two wind paddle blades with a larger inner diameter and a smaller outer diameter are strung on the wind paddle arms together with the tie rod seats, brackets and springs are provided on the back of the wind paddle blades, tie rod seats are provided on the wind paddle arms between the two blades, the tie rods are pulled at the front end of the perpendicular disk, and adjacent wind paddle arms in the same group are pulled by tie rods or wire ropes; the wind paddle group is closer to the column at the front end of the gear chamber, and the wind paddle group is farther from the column at the rear end of the gear chamber. The number of wind paddle groups on the front row surface of the movable frame crossbeam is less than that on the rear row surface. Therefore, the number of wind paddle groups on the rear row surface is more than that on the front row surface, aiming to meet the need of aligning with the wind direction; the wind paddle group is installed at the outer end and the middle of the movable frame crossbeam at the front and rear ends of the gear chamber. The wind paddle group and the wind paddle blades obtain different wind forces due to their different positions in the upper and lower and front and rear areas on the movable frame. Therefore, the sizes of the wind paddle blades are slightly different. The wind paddle blades above the movable frame are smaller than those below the movable frame, and the wind paddle blades in front of the movable frame are smaller than those behind the movable frame; the wind paddle blades at the outer end of the wind paddle arm are smaller than those in the middle of the wind paddle arm. Therefore, the wind paddle blades have differences in large, medium, small or large and small sizes on the movable frame; the wind paddle group on the movable frame transmits the wind force obtained by the wind paddle blades to the generator installed on the ground through the connection and relay of the transmission mechanism.
5. A multi-blade wind turbine, characterized in that Idea of multi-paddle machine: The idea of multi-paddle machine is a mechanical principle method in which a large number of wind paddle blades, wind paddles, wind paddle groups, and the multi-layer organizational structure of the multi-paddle machine are connected in series, stacked, and fissioned through the relay of the transmission mechanism on the frame body to obtain the combined force of the quality of wind power to overcome the resistance during the operation of the generator for power generation; the method principle of obtaining the quality of wind power through the quantitative change of the series multi-layer organizational structure of the transmission mechanism on the frame body is used as the basis for the establishment of the idea of multi-paddle machine, and an idea of multi-paddle machine that can be generalized to obtain the qualitative change of wind power through quantitative change is established. The technical principle of the multi-paddle wind power generator explains and proves that the quantitative change of the multi-paddle wind power generator achieves the establishment of the guiding function of the idea of qualitative change of wind power. The idea of multi-paddle machine establishes a development direction for obtaining wind energy resources.