Wind gathering generator combination device

By designing a wind-gathering generator combination device, wind resources from water surface, land, and high altitude are gathered, solving the problem of low wind resource utilization in existing wind power generation technologies and achieving more efficient wind capture and energy conversion.

CN223536474UActive Publication Date: 2025-11-11程同顺
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Patent Information

Application Number
CN202422604081.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-11-11
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

Existing wind power generation technologies are inadequate in terms of wind resource capture and conversion efficiency, resulting in a large amount of potential wind energy not being effectively utilized.

Method used

Design a wind-gathering generator assembly that combines components such as V-shaped ramps, rectangular buckets, curved and straight circular pipes, umbrella cones, cylinders, six-claw wheels, and wind blades to gather wind resources from the water surface, ground, and high altitudes, forming super-strong winds to drive multiple generators to generate electricity.

Benefits of technology

It improves the utilization rate of wind resources, enhances the driving efficiency of wind energy, and achieves more efficient wind capture and energy conversion, thus meeting the energy needs of society.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wind gathering generator combination device. Comprising a V-shaped slope, a rectangular opening square and round hopper, a bent straight and round pipeline, an umbrella circle center shaft, an umbrella cone, a cylinder, a long steel bar, a six-claw wheel, fan blades and a main power rotating shaft which are arranged on a first wind gathering power machine, and a square and round hopper, a straight round pipeline, a cone body, a short steel bar, a three-claw wheel, blades, three main shaft belt pulleys, three belts, three generators, a steel support and two cross beams which are arranged on a second wind gathering power machine. Two bearings, four semicircular transverse joists and four angle iron frames are arranged. The two wind gathering power machines are combined to gather the wind on the water surface, the wind on the ground and the wind in the air to push the main power rotating shaft and the main shaft belt pulley to rotate to form power, and then the power is connected with the three belt pulleys on the three generators through the three belts to drive the three generators to generate power. The wind power generation device has the advantages that wind energy on the water surface, on the ground and in the air is gathered to form power to generate electricity.
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Description

Technical Field

[0001] This application relates to the field of mechanical equipment technology, specifically to a wind turbine generator assembly. Background Technology

[0002] Against the backdrop of increasingly severe global climate change, human society's demand for electricity production using environmentally friendly resources is becoming increasingly urgent. Wind power, as an extremely abundant and sustainable clean energy source in nature, is of great significance for reducing dependence on fossil fuels and mitigating greenhouse gas emissions. Wind power is not only widely distributed around the world, but is also theoretically an inexhaustible energy source, thus being regarded as a key component in the future transformation of the energy structure.

[0003] However, current wind power technology faces a significant challenge in practical applications: the efficiency of capturing and converting natural wind resources still needs improvement. Although wind power technology has made some progress, existing equipment still has limitations in fully utilizing wind resources, resulting in actual power generation failing to adequately meet society's growing energy demands. Specifically, existing technologies still have considerable room for optimization in wind capture efficiency, energy conversion efficiency, and stable equipment operation, preventing the effective development and utilization of a large amount of potential wind energy.

[0004] In view of this, developing a mechanical device that can make more efficient and fuller use of the abundant wind resources in nature has become an important issue that urgently needs to be addressed in the field of wind power generation technology. Utility Model Content

[0005] The problem this utility model aims to solve is to provide a wind-gathering generator assembly that combines wind resources from the water surface, the ground, and the high altitude into a power source for generating electricity.

[0006] To solve the above problems, the technical solution provided in this application is as follows:

[0007] A wind-concentrating generator assembly includes a V-shaped ramp, a rectangular-mouthed square-round bucket, a curved and straight circular pipe, an umbrella-shaped central shaft, an umbrella-shaped cone, a cylinder, long steel bars, a six-jaw wheel, wind blades, and a main power shaft on a first wind-concentrating power unit; and a square-round bucket, a straight circular pipe, a conical body, short steel bars, a three-jaw wheel, blades and bearings on a second wind-concentrating power unit, a main shaft pulley, a generator, a belt, a steel support frame, a crossbeam, a semi-circular crossbeam, and an angle steel frame.

[0008] The lower end of the V-shaped ramp is flat, and the upper end is V-shaped; one end of the rectangular opening is round, and the other end is rectangular, with a V-shaped opening below the rectangular opening; the V-shaped opening below the rectangular opening connects to the V-shaped opening at the upper end of the V-shaped ramp; one end of the curved-straight circular pipe is curved, and the other end is straight; the end of the curved pipe connects to the round end of the rectangular opening.

[0009] The umbrella-shaped central shaft is set at the center of the straight circular tube of the curved-straight circular pipe. The umbrella cone is installed on the central shaft at one end of the umbrella-shaped central shaft, with the tip of the umbrella facing the curved circular tube. The cylinder is set inside the straight circular tube of the curved-straight circular pipe and is parallel to the straight circular tube. There are 6 long steel bars, and the umbrella-shaped central shaft is connected to the inner wall of the cylinder and the straight circular tube of the curved-straight circular pipe by the 6 long steel bars.

[0010] The outer circle of the six-claw wheel is a round wheel, and the inner circle is a spline hole; there are 12 fan blades, which are installed on the outer round wheel of the six-claw wheel; the fan blades on the six-claw wheel and its outer round wheel are installed outside the straight round pipe opening of the curved straight round pipe; one end of the square round bucket is square and the other end is round; the round pipe opening at one end of the straight round pipe is connected to the round opening end of the square round bucket;

[0011] One end of the conical body is conical with a central circular hole at the tip, and the other end is cylindrical. The conical body is positioned at the center of the straight circular pipe and is parallel to the pipe, with the tip pointing towards the square-round bucket. There are 6 short steel bars. The outer circumference of the conical body's cylinder is connected to the inner wall of the straight circular pipe by 6 short steel bars.

[0012] The outer circle of the three-jaw wheel is a round wheel, and the inner circle is a splined round hole; there are 12 blades, all of which are mounted on the outer circle of the three-jaw wheel; the three-jaw wheel and the blades on its outer circle are mounted on the outside of the round opening at one end of a straight round pipe;

[0013] The main power shaft is equipped with two splined shafts, two round shafts, and three main shaft pulleys. The two splined shafts on the main power shaft are respectively connected to the center splined holes of the six-jaw wheel and the center splined round holes of the three-jaw wheel. There are two crossbeams, which are mounted on a steel support. There are two bearings, which are installed in the middle of the two crossbeams and are respectively connected to the two round shafts on the main power shaft.

[0014] There are 3 generators, each with a pulley on its 3 shafts; there are 4 angle steel frames, which are placed on the lower layer of the steel support; the 3 generators are mounted on the 4 angle steel frames; there are 3 belts, which connect the 3 pulleys on the 3 shafts of the 3 generators and the 3 main shaft pulleys; there are 4 semi-circular horizontal support beams, which are placed on the steel support, and the lower semi-circles of the straight circular pipes and the curved circular pipes are both mounted on the 4 semi-circular horizontal support beams.

[0015] Preferably, the lower end of the V-shaped slope is connected to the water surface or the ground.

[0016] Preferably, the number of cylinders intersecting with the umbrella-shaped conical opening is one or more.

[0017] Preferably, the fan blades are fan-type or turbine-type; the blades are fan-type or turbine-type.

[0018] Compared with existing technologies, current wind power technologies suffer from low utilization rates of wind energy on water and land due to their shape and structural defects, and the wind energy in the upper atmosphere is also difficult to utilize, resulting in low power generation. The wind-concentrating power generation technology of this invention has a completely different shape and structure from existing wind power technologies. The advantages of this invention are:

[0019] (i) Both the water surface and the ground are flat. The flat surface at the lower end of the V-shaped slope is connected to the water surface or the ground, which allows the wind energy on the water surface and the wind energy on the ground to be fully utilized.

[0020] (ii) The relatively weak wind force on the water surface, land surface, low altitude and sub-high altitude in nature, after being diverted by the V-shaped slope and entering the rectangular opening square bucket, and then entering the curved and straight circular pipe, has become strong wind force. The wind flow is further divided and concentrated by the umbrella cone and cylinder, and the wind force flowing to the wind blade has become super strong wind force.

[0021] (III) The square and round bucket is set in the high air, so the wind energy in the high air can also be utilized. The wind energy in the high air and the wind energy flowing out from the six-claw wheel and its blades flow into the square and round bucket and converge into the round pipe, becoming strong wind. The wind flow then passes through the conical body and the cylinder and flows to the three-claw wheel blades, becoming super strong wind.

[0022] (iv) The six-jaw wheel and the blades on its outer wheel and the three-jaw wheel and the blades on its outer wheel both have a rotating lever effect, which greatly enhances the propulsion efficiency of wind energy.

[0023] (V) This utility model is equipped with multiple generators of different power. When the wind is weak, the generator with the lower power starts generating electricity; when the wind is strong, the generator with the higher power starts generating electricity; when the wind is very strong, all the generators, including the low-power and high-power generators, start generating electricity.

[0024] (vi) The combined wind energy from the two wind-concentrating turbines drives the main power shaft and main shaft pulley to rotate, generating a super-strong power. This power is then connected to the three pulleys on three generators via three belts, thereby driving the three generators to generate electricity. Therefore, compared with existing wind power technologies, the wind-concentrating power generation technology of this utility model has outstanding substantive features and significant progress. Attached Figure Description

[0025] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0026] Figure 1 This is a schematic diagram of the overall structure of Embodiment 1 of this utility model.

[0027] Figure 2 This is a structural schematic diagram of the first wind-generating turbine.

[0028] Figure 3 This is a schematic diagram of the second wind turbine.

[0029] Illustration:

[0030] 1. V-shaped ramp; 2. Rectangular opening with square and round hopper; 3. Curved and straight circular pipe; 4. Umbrella-shaped central shaft; 5. Umbrella cone; 6. Cylinder; 7. Long steel bar; 8. Six-jaw wheel; 9. Fan blade; 10. Main power shaft; 11. Square and round hopper; 12. Straight circular pipe; 13. Conical body; 14. Short steel bar; 15. Three-jaw wheel; 16. Blade; 17. Bearing; 18. Main shaft pulley; 19. Generator; 20. Belt; 21. Steel support; 22. Crossbeam; 23. Semi-circular crossbeam; 24. Angle steel frame. Detailed Implementation

[0031] To make the technical problems, technical solutions, and beneficial effects to be solved by this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and are not intended to limit the scope of this application.

[0032] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as being "connected to" another component, it can be directly connected to or indirectly connected to that other component.

[0033] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0034] To illustrate the technical solution described in this application, specific embodiments are provided below.

[0035] Example 1:

[0036] Figure 1 The image shows a wind turbine generator assembly, including, for example... Figure 2 The first wind turbine shown and such Figure 3 The second wind turbine shown.

[0037] Specifically, the wind-gathering generator assembly includes a V-shaped ramp 1, a rectangular-mouthed square-round bucket 2, a curved and straight round pipe 3, an umbrella-shaped central shaft 4, an umbrella-shaped cone 5, a cylinder 6, a long steel bar 7, a six-claw wheel 8, a wind blade 9, and a main power shaft 10 on the first wind-gathering power unit; a square-round bucket 11, a straight round pipe 12, a conical body 13, a short steel bar 14, a three-claw wheel 15, blades 16, a bearing 17, a main shaft pulley 18, a generator 19, a belt 20, a steel support 21, a crossbeam 22, a semi-circular cross support beam 23, and an angle steel frame 24 on the second wind-gathering power unit.

[0038] The lower end of the V-shaped ramp 1 is flat, and the upper end is V-shaped. One end of the rectangular-mouthed round-and-round hopper 2 is round, and the other end is rectangular, with a V-shaped opening below the rectangular opening. The V-shaped opening below the rectangular opening connects to the V-shaped opening at the upper end of the V-shaped ramp 1. One end of the curved-straight-round pipe 3 is a curved round pipe, and the other end is a straight round pipe, with the end of the curved round pipe connected to the round end of the rectangular-mouthed round-and-round hopper 2. The umbrella-shaped central shaft 4 is located at the center of the straight round pipe of the curved-straight-round pipe 3, and the umbrella cone 5 is installed on top of one end of the umbrella-shaped central shaft 4, with its pointed end facing the curved round pipe. The cylinder 6 is located inside the straight round pipe of the curved-straight-round pipe 3 and is parallel to the straight round pipe. The umbrella-shaped central shaft 4, the cylinder 6, and the inner wall of the straight round pipe of the curved-straight-round pipe 3 are connected by six long steel bars 7. The outer circle of the six-jaw wheel 8 is a round wheel, and the inner circle is a spline hole. The six-jaw wheel 8 is installed on the outside of the straight circular pipe end of the curved circular pipe 3, and the fan blades 9 are installed on the outer circular wheel of the six-jaw wheel 8. The number of fan blades 9 is 12.

[0039] The square-round hopper 11 has a square opening at one end and a round opening at the other. One end of the straight round pipe 12 is connected to the round opening of the square-round hopper 11. One end of the conical body 13 is conical with a central round hole at its tip; the other end is cylindrical. The conical body 13 is positioned at the center of the straight round pipe 12 and is parallel to it, with its conical tip facing the square-round hopper 11. The outer circumference of the conical body 13 is connected to the inner wall of the straight round pipe 12 by six short steel bars 14. The outer circumference of the three-jaw wheel 15 is a round wheel, and the inner circumference is splined. The three-jaw wheel 15 is installed outside the round opening at one end of the straight round pipe 12, and twelve blades 16 are installed on the outer circumference of the three-jaw wheel 15.

[0040] The main power shaft 10 is equipped with two splined shafts, two round shafts, and three main shaft pulleys 18. The two splined shafts on the main power shaft 10 are respectively connected to the center splined holes of the six-jaw wheel 8 and the three-jaw wheel 15.

[0041] There are two crossbeams 22, which are mounted on the steel support 21. There are two bearings 17, which are installed in the middle of the two crossbeams 22 and are respectively connected to two sections of round shaft on the main power shaft 10.

[0042] There are four angle steel frames 24, which are arranged on the lower layer of the steel support 21. There are three generators 19, which are mounted on the angle steel frames 24. Each generator 19 has a pulley on its three shafts, and the pulleys on the shafts are connected to the three main shaft pulleys 18 by three belts 20.

[0043] There are four semicircular horizontal support beams 23, which are set on the steel support 21. The lower semicircle of the straight circular pipe of the curved-straight circular pipe 3 and the lower semicircle of the straight circular pipe 12 are both installed on the four semicircular horizontal support beams 23.

[0044] In this embodiment, the lower end of the V-shaped ramp 1 is connected to the water surface or the ground.

[0045] The working principle of the above-mentioned wind turbine generator combination device is as follows:

[0046] In this embodiment, the wind on the water surface or the ground and the wind at a sub-high altitude are guided and converged by the V-shaped ramp 1 and flow into the rectangular opening square-round bucket 2. After being converged by the rectangular opening square-round bucket 2, the wind flows into the curved straight round pipe 3. The wind flow is then divided and converged by the umbrella cone 5 and the cylinder 6 and flows to the wind blade 9 outside the straight round pipe opening, which drives the wind blade 9 to rotate. The six-claw wheel 8 connected to the wind blade 9 and the main power shaft 10 in the central spline hole of the six-claw wheel 8 also rotate accordingly, forming a rotational power.

[0047] At the same time, the wind from the high altitude and the wind flowing from the six-claw wheel 8 and the wind blades 9 on the outer circular wheel flow together into the square-circular bucket 11, converge and flow into the straight circular pipe 12; the airflow is divided and converged through the conical body 13 and the straight circular pipe 12 and then flows to the blades 16 outside the opening of the straight circular pipe 12 to drive the blades 16 to rotate; the three-claw wheel 15 connected to the blades 16 and the main power shaft 10 connected to the central spline hole of the three-claw wheel 15 also rotate together and form a rotational power.

[0048] Therefore, the combined force formed by the two wind-gathering turbines above-mentioned to gather wind energy from the water surface or the ground, wind energy in the low altitude, wind energy in the sub-high altitude and wind energy in the high altitude drives the main power shaft 10 and the three main shaft pulleys 18 to rotate, thus generating a power. This power is then connected to the three pulleys on the shafts of the three generators through three belts 20, thereby driving the three generators to generate electricity.

[0049] In this embodiment, the V-shaped ramp 1 can be V-shaped, arc-shaped, or semi-circular.

[0050] In this embodiment, the opening of the rectangular-mouthed square bucket 2 is set at a secondary altitude to resist strong winds.

[0051] In this embodiment, the umbrella cone 5 has an open surface that can be made to expand or contract. When the wind is weak, the umbrella opening expands; when the wind is strong, the umbrella opening contracts.

[0052] In this embodiment, one, two, or three cylinders 6 may be provided that intersect with the opening of the umbrella cone 5.

[0053] In this embodiment, the fan blades 9 on the outer circular wheel of the six-claw wheel 8 can be 12, more than 12, or less than 12. The fan blades 9 can be made into a fan type or a turbine type.

[0054] In this embodiment, the square opening of the square bucket 11 is made into an openable opening that can be expanded or reduced; when the wind force at high altitude is small, the square opening of the square bucket 11 expands; when the wind force at high altitude is large, the square opening of the square bucket 11 shrinks.

[0055] In this embodiment, the blades 16 on the outer cylindrical wheel of the three-jaw wheel 15 can be 12, more than 12, or less than 12. The blades 16 can be fan-type or boiler-type.

[0056] In this embodiment, the main power shaft 10 is connected to the generator 19, which can be connected by a pulley and belt 20, or by multiple gears.

[0057] In this embodiment, the power output and number of generators 19 depend on the environment, region, and altitude. In areas or environments with abundant wind resources, the wind-gathering generator assembly, including the steel frame for mounting the wind-gathering generators, is installed at a high geographical location. Because the total amount of wind resources gathered by the wind-gathering generator set is large and the wind force is strong, the power output of generators 19 needs to be large, and the number of generators 19 also needs to be large, which can be 3, 4 or 5, 7 or 8, or more than 10. In areas or environments with scarce wind resources, a wind-gathering generator assembly of the same size as the former, including the steel frame for mounting the wind-gathering generators, is installed at a low geographical location. Because the total amount of wind resources gathered by the wind-gathering generators is small and the wind force is not strong, the power output of generators 19 needs to be small, and the number of generators 19 also needs to be small, which can be 3 or less.

[0058] In this embodiment, a rotating device is added to the wind-gathering generator to adapt to changes in wind direction. For example, when the north wind blows, the V-shaped surface faces north, and when the south wind blows, the V-shaped surface rotates to face south.

[0059] This application provides a wind turbine generator assembly that can be installed and used on water and in most areas on land.

[0060] The above-described embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application, and should all be included within the protection scope of this application.

Claims

1. A wind-concentrating generator assembly, characterized in that: The components include the V-shaped ramp (1), rectangular-mouthed square-round bucket (2), curved and straight round pipe (3), umbrella-shaped central shaft (4), umbrella cone (5), cylinder (6), long steel bar (7), six-claw wheel (8), wind blade (9), main power shaft (10) on the first wind-gathering power machine, and the square-round bucket (11), straight round pipe (12), conical body (13), short steel bar (14), three-claw wheel (15), blade (16), bearing (17), main shaft pulley (18), generator (19), belt (20), steel support (21), crossbeam (22), semi-circular cross support beam (23), and angle steel frame (24) on the second wind-gathering power machine. The lower end of the V-shaped ramp (1) is flat, and the upper end is V-shaped; one end of the rectangular-mouthed round-and-round hopper (2) is round, and the other end is rectangular, with a V-shaped opening below the rectangular opening; the V-shaped opening below the rectangular opening is connected to the V-shaped opening at the upper end of the V-shaped ramp (1); one end of the curved-straight-round pipe (3) is a curved round pipe, and the other end is a straight round pipe; the pipe end of the curved round pipe is connected to the round end of the rectangular-mouthed round-and-round hopper (2); The umbrella-shaped central shaft (4) is located at the center of the straight circular tube of the curved-straight circular pipe (3). The umbrella cone (5) is installed on the central shaft at one end of the umbrella-shaped central shaft (4), with the tip of the umbrella facing the curved circular tube. The cylinder (6) is located inside the straight circular tube of the curved-straight circular pipe (3) and is parallel to the straight circular tube. There are 6 long steel bars (7). The umbrella-shaped central shaft (4) is connected to the inner wall of the cylinder (6) and the straight circular tube of the curved-straight circular pipe (3) by 6 long steel bars (7). The outer circle of the six-claw wheel (8) is a round wheel, and the inner circle is a spline hole; the number of fan blades (9) is 12, and the 12 fan blades (9) are installed on the outer round wheel of the six-claw wheel (8); the fan blades (9) on the six-claw wheel (8) and its outer round wheel are installed outside the straight round pipe opening of the curved-straight round pipe (3); one end of the square-round bucket (11) is square-shaped, and the other end is round-shaped; the round pipe opening at one end of the straight round pipe (12) is connected to the round opening end of the square-round bucket (11); The conical body (13) has a conical shape at one end with a central circular hole at the tip, and a cylindrical shape at the other end. The conical body (13) is located at the center of the straight circular pipe (12) and is parallel to the straight circular pipe (12), with the tip of the cone facing the square-round bucket (11). There are 6 short steel bars (14). The outer circle of the cylindrical part of the conical body (13) is connected to the inner wall of the straight circular pipe (12) by 6 short steel bars (14). The outer circle of the three-jaw wheel (15) is a round wheel, and the inner circle is a splined round hole; the number of blades (16) is 12, and all 12 blades (16) are installed on the outer round wheel of the three-jaw wheel (15); the blades (16) on the three-jaw wheel (15) and its outer round wheel are installed outside the round pipe opening at one end of the straight round pipe (12); The main power shaft (10) is provided with two splined shafts, two round shafts and three main shaft pulleys; the two splined shafts on the main power shaft (10) are respectively connected to the center splined hole of the six-jaw wheel (8) and the center splined round hole of the three-jaw wheel (15); there are two crossbeams (22), which are set on the steel bracket (21); there are two bearings (17); the two bearings (17) are respectively installed in the middle position of the two crossbeams (22); the two bearings (17) are respectively connected to the two round shafts on the main power shaft (10); The number of generators (19) is 3, and each of the 3 shafts of the 3 generators (19) is provided with a pulley; the number of angle steel frames (24) is 4, and the 4 angle steel frames (24) are set on the lower layer of the steel support (21); the 3 generators (19) are installed on the 4 angle steel frames (24); the number of belts (20) is 3; the 3 pulleys on the 3 shafts of the 3 generators (19) and the 3 main shaft pulleys (18) are connected by the 3 belts (20); the number of semicircular horizontal support beams (23) is 4, and the 4 semicircular horizontal support beams (23) are set on the steel support (21); the lower half of the straight circular pipe of the curved straight circular pipe (3) and the lower half of the straight circular pipe (12) are both installed on the 4 semicircular horizontal support beams (23).

2. The wind-concentrating generator assembly according to claim 1, characterized in that: The lower end of the V-shaped slope (1) is connected to the water surface or the ground.