A new type of wind power generation device and a method for installing the wind power generation device
By designing pre-embedded components and steering adjustment components, the problems of difficult installation and insufficient wind resistance of wind power generation devices have been solved, achieving stable installation and efficient power generation, expanding the application scope, and simplifying the maintenance process.
Patent Information
- Application Number
- CN202210752445.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-29
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2042-06-29
AI Technical Summary
Existing wind power generation devices are large in size, difficult to install and maintain, have great limitations, can only be installed in specific areas, have poor wind resistance, and are easy to tip over.
The use of pre-embedded components enhances installation strength and wind resistance, while the steering adjustment components ensure the device always faces the wind. The power generation components are easy to install and remove. Through the design of pre-embedded hooks and steering adjustment components, combined with the installation method of a small crane, the device achieves stability and efficient power generation.
It improves the installation strength and wind resistance of wind power generation equipment, reduces the risk of equipment tipping over, simplifies the installation and maintenance process, expands the installation range, and enhances power generation efficiency.
Smart Images

Figure CN115182849B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of wind power generation device, in particular to a novel wind power generation device and a mounting method thereof. BACKGROUND
[0002] The existing wind power generation device has the problems of large size, difficulty in installation and maintenance, and great limitation, and can only be installed on coastal islands, grassland pastoral areas, mountainous areas and plateau areas, and cannot be used on the roof of a building. In addition, the existing wind power generation device has poor wind resistance and often tilts. SUMMARY
[0003] (I) Technical problems solved
[0004] In view of the above problems of the prior art, the present application provides a novel wind power generation device and a mounting method thereof to solve the above problems.
[0005] (II) Technical solutions
[0006] To achieve the above object, the present application provides the following technical solutions: a novel wind power generation device, comprising a main frame, a pre-buried assembly is arranged at the bottom end of the main frame, a control box is welded and installed on the side surface of the main frame, a driving motor is fixedly installed at the bottom end of the main frame, a top cover is detachably installed at the top end of the main frame through locking bolts II, a steering adjusting assembly is arranged in the main frame, a lower turntable is rotatably installed in the middle of the top cover, a plug-in column is fixedly installed at the bottom end of the lower turntable, an upper turntable is fixedly installed at the upper end of the lower turntable, a top box is fixedly installed at the top end of the upper turntable, an air inlet slot is formed in the front side of the top box, a power generation assembly mounting mechanism is arranged in the air inlet slot, a power generation unit is fixedly installed in the air inlet slot through the power generation assembly mounting mechanism, an impeller shaft is fixedly installed on the input shaft of the power generation unit, a wind turbine is fixedly installed on the outer side of the impeller shaft, a wind direction detector is fixedly installed on the top end of the top box, the threaded end of the locking bolt II extends into the inside of the pre-buried assembly, a storage battery, a control module and a wireless transmission module are arranged in the control box.
[0007] The pre-embedded assembly includes a bottom support, a pre-embedded hook one and a pre-embedded hook two, the bottom support is fixedly installed at the bottom end of the main rack, the bottom end of the bottom support is fixedly installed with the pre-embedded hook one and the pre-embedded hook two, four groups of the pre-embedded hook one and the pre-embedded hook two are pre-embedded in the concrete, the installation strength of the main rack and the roof can be improved, the pre-embedded hook one and the pre-embedded hook two in the "J" shape structure can also improve the wind resistance of the pre-embedded assembly, effectively avoid the main rack from being blown down by strong wind, and the overall wind resistance of the new wind power generation device is improved.
[0008] The steering adjusting assembly includes a secondary shaft, a secondary gear, a primary gear, a primary shaft, a through hole and a through slot, the secondary shaft and the primary shaft are rotatably installed in the main rack, the secondary gear is fixedly installed on the outer side of the secondary shaft, the primary gear is fixedly installed on the outer side of the primary shaft, and the top end of the primary gear is provided with the through hole and the through slot.
[0009] The power generation assembly mounting mechanism includes an ear seat, a threaded hole one, an inner support, a threaded hole two and a locking bolt one, the ear seat is fixedly installed on the inner wall of the air inlet groove, the threaded hole one is formed in the front side of the ear seat, the outer side of the inner support is provided with the threaded hole two, and the inner support is fixedly installed on the inner side of the ear seat through the threaded hole one, the threaded hole two and the locking bolt one.
[0010] Preferably, the pre-embedded assembly is provided with four groups of the same, and the four groups of the pre-embedded assembly are symmetrically distributed at the four corners of the bottom end of the main rack, the cross section of the bottom support is triangular, and the wind resistance of the pre-embedded assembly is improved.
[0011] Preferably, the pre-embedded hook one and the pre-embedded hook two are provided with four groups of the same, the shapes of the pre-embedded hook one and the pre-embedded hook two are the same, and the pre-embedded hook one and the pre-embedded hook two are in the "J" shape structure, and the pre-embedded hook one and the pre-embedded hook two in the "J" shape structure can also improve the wind resistance of the pre-embedded assembly.
[0012] Preferably, the secondary shaft is in transmission connection with the output shaft of the bottom end drive motor of the main rack, the number of the secondary shaft, the secondary gear and the drive motor is the same, and the secondary shaft, the secondary gear and the drive motor are symmetrically distributed around the center line of the main rack.
[0013] Preferably, the secondary gear and the primary gear are in meshing connection, the through hole and the through slot are provided with four groups of the same, and the through hole and the through slot are symmetrically distributed around the center line of the secondary gear.
[0014] Preferably, the plug-in column is in plug-in connection with the through hole, the plug-in column corresponds to the through hole one by one, the center lines of the secondary gear, the upper turntable and the lower turntable are located on the same vertical line, and the lower turntable and the secondary gear are in contact with each other.
[0015] Preferably, the power generation assembly mounting mechanism is provided in plurality and is equidistantly distributed inside the top box with a U-shaped cross section, the power generation unit is fixedly mounted on the back of the inner support, the impeller rotating shaft penetrates through the inner support and extends to the front side of the inner support, and the wind wheel is located on the front side of the inner support.
[0016] Preferably, the inner support has an O-shaped cross section, the thread hole one and the thread hole two have the same diameter, and the thread hole one and the thread hole two are both in threaded connection with the locking bolt one.
[0017] The application further provides a novel wind power generation device and a mounting method thereof, comprising the following steps:
[0018] S1: First, the staff welds the bottom support with the embedded hooks one and two, pours concrete at the position where installation is required, embeds the embedded hooks one and two in the concrete, and waits for the bottom support to be completely fastened with the poured concrete;
[0019] S2: A small crane is used to hoist the main frame to the top end of the bottom support until the main frame is completely aligned with the thread holes on the bottom support, the secondary rotating shaft and the primary rotating shaft are installed on the opening at the top end of the main frame through the bearing seat, the secondary gear is installed on the outside of the secondary rotating shaft, the primary gear is installed on the outside of the primary rotating shaft, the driving motor is installed at the bottom end of the main frame through bolts, and the output shaft of the driving motor is fastened and installed with the secondary rotating shaft through bolts;
[0020] S3: A small crane is used to hoist the top cover to the top end of the main frame until the top cover is completely aligned with the thread holes on the main frame and the bottom support, and the top cover, the main frame and the bottom support are fastened and installed together through the locking bolt two;
[0021] S4: A small crane is used to hoist the combination of the upper rotating disc and the lower rotating disc to the upper side of the top cover, the insertion column at the bottom end of the lower rotating disc is inserted into the through hole until the lower rotating disc is completely attached to the primary gear;
[0022] S5: A small crane is used to hoist the top box to the top end of the upper rotating disc, and the center line of the top box is aligned with the center line of the upper rotating disc, and the top box is welded to the upper rotating disc through a welding device;
[0023] S6: The power generation unit is installed on the back of the inner support through bolts, the impeller rotating shaft is installed on the input end of the power generation unit through bolts, the wind wheel is installed on the impeller rotating shaft through bolts, the inner support is inserted into the air inlet groove and pulled down until the inner support enters the inner part of the ear seat, and the inner support is installed on the ear seat through the locking bolt one, the thread hole one and the thread hole two;
[0024] S7: the line between the power generation unit, drive motor, wind direction detector and control box is connected, at this time the installation can be completed.
[0025] Compared with the prior art, the application provides a new wind power generation device and a mounting method of the wind power generation device, which has the following beneficial effects:
[0026] 1. The new wind power generation device and the mounting method of the wind power generation device, by embedding four groups of pre-buried hooks one and pre-buried hooks two in the concrete, the installation strength of the main frame and the roof can be improved, and the pre-buried hooks one and pre-buried hooks two in the "J" shape structure can also improve the wind resistance of the pre-buried assembly, effectively avoiding the main frame from being blown down by strong wind, when the wind is large, the top box is driven to rotate by the adjusting assembly, so that the side of the top box is in the windward state, because the cross section of the top box is in the "U" shape structure, the wind can be divided, the overall wind resistance of the new wind power generation device is improved, and the practicability is improved.
[0027] 2. The new wind power generation device and the mounting method of the wind power generation device, by the setting of the steering adjusting assembly, the output shaft of the drive motor drives the main gear to rotate around the main shaft through the auxiliary shaft and the auxiliary gear, the main gear can drive the top box to rotate through the upper turntable and the lower turntable at the top, so that the top box is in the windward or windward state, and the power generation capacity of the wind power generation device is improved.
[0028] 3. The new wind power generation device and the mounting method of the wind power generation device, by the setting of the power generation assembly mounting mechanism, the power generation unit, the impeller shaft and the wind wheel can be quickly disassembled and assembled through the ear seat, the threaded hole one, the inner support, the threaded hole two and the locking bolt one, the maintenance is relatively simple, compared with the wind power generation device in the prior art, the wind power generation device in the patent has the characteristics of smaller size, less limitation, convenient installation and maintenance, and better wind resistance. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 It is a three-dimensional structure diagram of the application Figure 1 ;
[0030] Figure 2 It is a three-dimensional structure diagram of the application Figure 2 ;
[0031] Figure 3 It is a three-dimensional structure diagram of the application Figure 3 ;
[0032] Figure 4 It is a three-dimensional structure diagram of the application
[0033] Figure 5 It is a three-dimensional structure diagram of the application Figure 1 ;
[0034] Figure 6 The main frame split structure of the present application Figure 2
[0035] Figure 7 The steering adjustment assembly installation structure of the present application
[0036] Figure 8 The power generation assembly installation structure of the present application
[0037] Wherein: 1, main frame; 2, pre-embedded component; 201, bottom support; 202, pre-embedded hook one; 203, pre-embedded hook two; 3, control box; 4, driving motor; 5, top cover; 6, steering adjustment assembly; 601, auxiliary rotating shaft; 602, auxiliary gear; 603, main gear; 604, main rotating shaft; 605, through hole; 606, through slot; 7, top box; 8, power generation assembly installation mechanism; 801, ear seat; 802, threaded hole one; 803, inner support; 804, threaded hole two; 805, locking bolt one; 9, power generation unit; 10, impeller rotating shaft; 11, wind turbine; 12, locking bolt two; 13, upper rotating disc; 14, lower rotating disc; 15, plug-in column; 16, wind direction detector; 17, air inlet slot. DETAILED DESCRIPTION
[0038] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those of ordinary skill in the art without creative work belong to the scope of protection of the present application.
[0039] Please refer to Figures 1-8 The utility model provides a novel wind power generation device, including main frame 1, the bottom end of main frame 1 is provided with pre -buried component 2, pre -buried component 2 includes bottom support 201, pre -buried hook one 202 and pre -buried hook two 203, bottom support 201 is fixedly installed at the bottom end of main frame 1, and the bottom end of bottom support 201 is fixedly installed with pre -buried hook one 202 and pre -buried hook two 203, pre -buried component 2 is provided with same four groups, and four groups of pre -buried component 2 are symmetrically distributed in the four corners of the bottom end of main frame 1, and the cross section of bottom support 201 is triangular, pre -buried hook one 202 and pre -buried hook two 203 are provided with same four groups, pre -buried hook one 202 and pre -buried hook two 203 are same in shape, and pre -buried hook one 202 and pre -buried hook two 203 are all " J " type structure, in the process of using device, by pre -buried hook one 202 and pre -buried hook two 203 are pre -buried in concrete, can promote the installation strength of main frame 1 and roof, and pre -buried hook one 202 and pre -buried hook two 203 of " J " type structure can also promote the wind -resisting capacity of pre -buried component 2, effectively avoid main frame 1 to be blown down by strong wind, improve the overall wind -resisting capacity of novel wind power generation device,
[0040] The side of the main frame 1 is welded and installed with a control box 3, the bottom end of the main frame 1 is fixedly installed with a driving motor 4, the top end of the main frame 1 is detachably installed with a top cover 5 through locking bolts two 12, the inside of the main frame 1 is provided with a steering adjusting assembly 6, the steering adjusting assembly 6 comprises a secondary rotating shaft 601, a secondary gear 602, a primary gear 603, a primary rotating shaft 604, a through hole 605 and a through slot 606, the secondary rotating shaft 601 and the primary rotating shaft 604 are rotatably installed in the inside of the main frame 1, the secondary gear 602 is fixedly installed on the outer side of the secondary rotating shaft 601, the primary gear 603 is fixedly installed on the outer side of the primary rotating shaft 604, the top end of the primary gear 603 is provided with the through hole 605 and the through slot 606, the secondary rotating shaft 601 is in transmission connection with the output shaft of the driving motor 4 at the bottom end of the main frame 1, the number of the secondary rotating shaft 601, the secondary gear 602 and the driving motor 4 is the same, the secondary rotating shaft 601, the secondary gear 602 and the driving motor 4 are symmetrically distributed around the center line of the main frame 1, the secondary gear 602 and the primary gear 603 are in meshing connection, the through hole 605 and the through slot 606 are all provided with the same four, the through hole 605 and the through slot 606 are symmetrically distributed around the center line of the secondary gear 602, the plug-in column 15 is in plug-in connection with the through hole 605, the plug-in column 15 corresponds to the through hole 605 one by one, the center lines of the secondary gear 602, the upper turntable 13 and the lower turntable 14 are located on the same vertical line, the lower turntable 14 is in contact with the secondary gear 602, the lower turntable 14 is rotatably installed in the middle of the top cover 5, the plug-in column 15 is fixedly installed at the bottom end of the lower turntable 14, the upper turntable 13 is fixedly installed at the upper end of the lower turntable 14, the top end of the upper turntable 13 is fixedly installed with a top box 7, in the process of using the device, the wind direction detector 16 detects the wind direction in real time and transmits data to the control box 3 for processing, the control box 3 controls the four same driving motors 4 to start, the output shaft of the driving motor 4 drives the primary gear 603 to rotate around the primary rotating shaft 604 through the secondary rotating shaft 601 and the secondary gear 602, the primary gear 603 can drive the top box 7 to rotate through the upper turntable 13 and the lower turntable 14 at the top end, so that the top box 7 is always in the windward state, which improves the power generation capacity of the wind power generation device;
[0041] The front side of the top box 7 is provided with an air inlet groove 17, and the inside of the air inlet groove 17 is provided with a power generation assembly mounting mechanism 8. The power generation assembly mounting mechanism 8 comprises an ear seat 801, a threaded hole one 802, an inner support 803, a threaded hole two 804 and a locking bolt one 805. The ear seat 801 is fixedly installed on the inner wall of the air inlet groove 17. The threaded hole one 802 is formed on the front side of the ear seat 801. The outer side of the inner support 803 is provided with the threaded hole two 804. The inner support 803 is fixedly installed on the inner side of the ear seat 801 through the threaded hole one 802, the threaded hole two 804 and the locking bolt one 805. The power generation assembly mounting mechanism 8 is provided with a plurality of same power generation assembly mounting mechanisms 8, and the power generation assembly mounting mechanisms 8 are equally spaced in the inside of the top box 7. The cross section of the top box 7 is in a "U" shape structure. The power generation unit 9 is fixedly installed on the back of the inner support 803. The impeller shaft 10 penetrates through the inner support 803 and extends to the front side of the inner support 803. The wind wheel 11 is located on the front side of the inner support 803. The cross section of the inner support 803 is in a "—O—" shape structure. The hole diameter of the threaded hole one 802 and the threaded hole two 804 is same, and the threaded hole one 802 and the threaded hole two 804 are both in threaded connection with the locking bolt one 805. The inside of the air inlet groove 17 is fixedly installed with the power generation unit 9 through the power generation assembly mounting mechanism 8. The input shaft of the power generation unit 9 is fixedly installed with the impeller shaft 10. The outer side of the impeller shaft 10 is fixedly installed with the wind wheel 11. The side of the top end of the top box 7 is fixedly installed with the wind direction detector 16. The threaded end of the locking bolt two 12 extends to the inside of the pre-buried assembly 2. The inside of the control box 3 is provided with a storage battery, a control module and a wireless transmission module. In the process of installing the device, the power generation unit 9 is installed on the back of the inner support 803 by using a bolt. The impeller shaft 10 is installed on the input end of the power generation unit 9 by using a bolt. The wind wheel 11 is installed on the impeller shaft 10 by using a bolt. The inner support 803 is aligned with the air inlet groove 17 and is inserted into the air inlet groove 17, and the inner support 803 is pulled down until the inner support 803 enters the inside of the ear seat 801. The inner support 803 is installed on the ear seat 801 by using the locking bolt one 805, the threaded hole one 802 and the threaded hole two 804. The operation is simple and convenient for maintenance. In the process of using the device, the wind drives the wind wheel 11 to rotate. The wind wheel 11 drives the power generation unit 9 to work through the impeller shaft 10. The power generation unit 9 converts the potential energy of the wind into electric energy and transmits the electric energy to the storage battery in the inside of the control box 3 through a wire harness. When the wind direction detector 16 detects a typhoon or a large wind, the control module controls the steering adjusting assembly 6 to work, so that the side of the top box 7 is in a windward state. Since the cross section of the top box 7 is in a "U" shape structure, the wind can be divided, so as to avoid damage of the wind power generation device by a typhoon or a strong wind, and the practicability of the device is improved.
[0042] A novel wind power generation device and a method for installing the wind power generation device, comprising the following steps:
[0043] S1: First, the staff welds the bottom support 201 with the embedded hook one 202 and the embedded hook two 203 together, pours concrete at the position where installation is required, and embeds the embedded hook one 202 and the embedded hook two 203 in the concrete, and waits for the bottom support 201 to be completely fastened with the poured concrete;
[0044] S2: Using a small crane, hoist the main frame 1 to the top end of the bottom support 201 until the main frame 1 is completely aligned with the threaded holes on the bottom support 201, install the secondary rotating shaft 601 and the main rotating shaft 604 through the bearing seat at the opening at the top end of the main frame 1, install the secondary gear 602 on the outside of the secondary rotating shaft 601, install the main gear 603 on the outside of the main rotating shaft 604, and install the driving motor 4 at the bottom end of the main frame 1 by bolting, and fasten the output shaft of the driving motor 4 motor together with the secondary rotating shaft 601 using bolts;
[0045] S3: Using a small crane, hoist the top cover 5 to the top end of the main frame 1 until the top cover 5 is completely aligned with the threaded holes on the main frame 1 and the bottom support 201, and fasten the top cover 5, the main frame 1 and the bottom support 201 together using locking bolts two 12;
[0046] S4: Using a small crane, hoist the combination of the upper turntable 13 and the lower turntable 14 to the upper side of the top cover 5, and insert the insertion column 15 at the bottom end of the lower turntable 14 into the through hole 605 until the lower turntable 14 is completely attached to the main gear 603;
[0047] S5: Using a small crane, hoist the top box 7 to the top end of the upper turntable 13, and align the center line of the top box 7 with the center line of the upper turntable 13, and weld the top box 7 with the upper turntable 13 using a welding device;
[0048] S6: Install the power generation unit 9 on the back of the inner support 803 using bolts, install the impeller rotating shaft 10 on the input end of the power generation unit 9 using bolts, install the wind turbine 11 on the impeller rotating shaft 10 using bolts, insert the inner support 803 into the air inlet slot 17, and pull the inner support 803 down until the inner support 803 enters the inside of the ear seat 801, and install the inner support 803 on the ear seat 801 using locking bolts one 805, threaded holes one 802 and threaded holes two 804;
[0049] S7: Connect the lines between the power generation unit 9, the driving motor 4, the wind direction detector 16 and the control box 3, and the installation is completed at this time.
[0050] In use, the wind direction detector 16 detects the wind direction in real time and transmits data to the control box 3 for processing, and the control box 3 controls the four same driving motors 4 to start, and the output shaft of the driving motor 4 drives the main gear 603 to rotate around the main shaft 604 through the secondary shaft 601 and the secondary gear 602, and the main gear 603 can drive the top box 7 to rotate through the upper turntable 13 and the lower turntable 14 at the top, so that the top box 7 is always in the windward state, when the top box 7 is in the windward state, the wind drives the wind turbine 11 to rotate, and the wind turbine 11 drives the power generation unit 9 to work through the impeller shaft 10, and the power generation unit 9 converts the potential energy of the wind into electric energy and transmits it to the storage battery in the control box 3 through the wire harness, when the wind direction detector 16 detects a typhoon or strong wind, the control module controls the steering adjusting assembly 6 to work, so that the side of the top box 7 is in the windward state, because the cross section of the top box 7 is in the shape of "U", the wind can be divided, so as to avoid damage to the wind power generation device by typhoon or strong wind, and the practicability of the device is improved, at the same time, the four groups of pre-buried hooks one 202 and pre-buried hooks two 203 are pre-buried in the concrete, which can improve the installation strength of the main rack 1 and the roof, and the pre-buried hooks one 202 and pre-buried hooks two 203 in the shape of "J" can also improve the wind resistance of the pre-buried assembly 2, effectively avoid the main rack 1 being blown down by strong wind, improve the overall wind resistance of the new type of wind power generation device, and the practicability is further improved, and the power generation unit 9, the impeller shaft 10 and the wind turbine 11 can be quickly disassembled through the ear seat 801, the threaded hole one 802, the inner support 803, the threaded hole two 804 and the locking bolt one 805, compared with the wind power generation device in the prior art, the wind power generation device in the patent has the characteristics of smaller size, less limitation, convenient installation and maintenance, and better wind resistance.
[0051] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A new wind power generation device comprising a main frame (1), characterized in that: The bottom end of the main rack (1) is provided with a pre-buried assembly (2), the side of the main rack (1) is welded and installed with a control box (3), the bottom end of the main rack (1) is fixedly installed with a driving motor (4), the top end of the main rack (1) is detachably installed with a top cover (5) through locking bolts two (12), the inside of the main rack (1) is provided with a steering adjusting assembly (6), the middle of the top cover (5) is rotatably installed with a lower turntable (14), the bottom end of the lower turntable (14) is fixedly installed with a plug-in column (15), the upper end of the lower turntable (14) is fixedly installed with an upper turntable (13), the top end of the upper turntable (13) is fixedly installed with a top box (7), the front side of the top box (7) is provided with an air inlet groove (17), the inside of the air inlet groove (17) is provided with a power generation assembly mounting mechanism (8), the inside of the air inlet groove (17) is fixedly installed with a power generation unit (9) through the power generation assembly mounting mechanism (8), the input shaft of the power generation unit (9) is fixedly installed with an impeller rotating shaft (10), the outer side of the impeller rotating shaft (10) is fixedly installed with a wind wheel (11), the side of the top end of the top box (7) is fixedly installed with a wind direction detector (16), the threaded end of the locking bolts two (12) extends to the inside of the pre-buried assembly (2), the inside of the control box (3) is provided with a storage battery, a control module and a wireless transmission module; The pre-buried assembly (2) comprises a bottom support (201), a pre-buried hook one (202) and a pre-buried hook two (203), the bottom support (201) is fixedly installed at the bottom end of the main rack (1), the bottom end of the bottom support (201) is fixedly installed with the pre-buried hook one (202) and the pre-buried hook two (203); The steering adjusting assembly (6) comprises a secondary rotating shaft (601), a secondary gear (602), a primary gear (603), a primary rotating shaft (604), a through hole (605) and a through slot (606), the inside of the main rack (1) is rotatably installed with the secondary rotating shaft (601) and the primary rotating shaft (604), the outer side of the secondary rotating shaft (601) is fixedly installed with the secondary gear (602), the outer side of the primary rotating shaft (604) is fixedly installed with the primary gear (603), the top end of the primary gear (603) is provided with the through hole (605) and the through slot (606); The power generation assembly mounting mechanism (8) comprises an ear seat (801), a threaded hole one (802), an inner support (803), a threaded hole two (804) and a locking bolt one (805), the ear seat (801) is fixedly installed on the inner wall of the air inlet groove (17), the threaded hole one (802) is formed on the front side of the ear seat (801), the outer side of the inner support (803) is provided with the threaded hole two (804), and the inner support (803) is fixedly installed on the inner side of the ear seat (801) through the threaded hole one (802), the threaded hole two (804) and the locking bolt one (805). The power generation assembly mounting mechanism (8) is provided in plurality, and is equidistantly distributed in the interior of the top box (7) with a "U" shaped cross section, the power generation unit (9) is fixedly installed on the back of the inner support (803), the impeller rotating shaft (10) penetrates the inner support (803) and extends to the front side of the inner support (803), and the wind impeller (11) is located on the front side of the inner support (803).
2. A new wind power generation device according to claim 1, characterized in that: The embedded assembly (2) is provided in four groups, and the four groups of the embedded assembly (2) are symmetrically distributed at the four corners of the bottom end of the main rack (1), and the cross section of the bottom support (201) is triangular.
3. A novel wind power generation device according to claim 2, characterized in that: The embedded hook one (202) and the embedded hook two (203) are provided in four groups, the embedded hook one (202) and the embedded hook two (203) are the same in shape, and the embedded hook one (202) and the embedded hook two (203) are "J" shaped structures.
4. A novel wind power generation device according to claim 3, characterized in that: The auxiliary rotating shaft (601) is in transmission connection with the output shaft of the driving motor (4) at the bottom end of the main rack (1), the number of the auxiliary rotating shaft (601), the auxiliary gear (602) and the driving motor (4) is the same, and the auxiliary rotating shaft (601), the auxiliary gear (602) and the driving motor (4) are symmetrically distributed around the center line of the main rack (1).
5. A novel wind power generation device according to claim 4, characterized in that: The auxiliary gear (602) and the main gear (603) are in meshing connection, the through hole (605) and the through slot (606) are provided with four in the same way, and the through hole (605) and the through slot (606) are symmetrically distributed around the center line of the auxiliary gear (602).
6. A novel wind power generation device according to claim 5, characterized in that: The plug-in column (15) is in plug-in connection with the through hole (605), and the plug-in column (15) corresponds to the through hole (605) one by one.
7. A novel wind power generation device according to claim 6, characterized in that: The thread hole one (802) and the thread hole two (804) are the same in hole diameter, and the thread hole one (802) and the thread hole two (804) are in threaded connection with the locking bolt one (805).
8. A method of installing a new wind power plant as claimed in any one of claims 1 to 7, characterized in that, The steps include: S1: first, the staff welds the bottom support (201) with the embedded hook one (202) and the embedded hook two (203), pours concrete at the position where installation is needed, embeds the embedded hook one (202) and the embedded hook two (203) in the concrete, and waits for the bottom support (201) to be completely fastened with the poured concrete; S2: using a small crane, hoist the main rack (1) to the top end of the bottom support (201) until the main rack (1) is completely aligned with the thread holes on the bottom support (201), install the auxiliary rotating shaft (601) and the main rotating shaft (604) through the bearing seat at the opening at the top end of the main rack (1), install the auxiliary gear (602) on the outside of the auxiliary rotating shaft (601), install the main gear (603) on the outside of the main rotating shaft (604), and install the driving motor (4) at the bottom end of the main rack (1) through bolts, and fasten the output shaft of the driving motor (4) and the auxiliary rotating shaft (601) together through bolts. S3: Using a small crane, hoist the top cover (5) to the top end of the main frame (1) until the top cover (5) is fully aligned with the threaded holes on the main frame (1) and the bottom support (201), and use the locking bolt two (12) to fasten and install the top cover (5), the main frame (1) and the bottom support (201) together; S4: Using a small crane, hoist the combination of the upper turntable (13) and the lower turntable (14) to the upper side of the top cover (5), and insert the plug-in column (15) at the bottom end of the lower turntable (14) into the through hole (605) until the lower turntable (14) is fully attached to the main gear (603); S5: Using a small crane, hoist the top box (7) to the top end of the upper turntable (13) and align the center line of the top box (7) with the center line of the upper turntable (13), and use the welding device to weld the top box (7) and the upper turntable (13) together; S6: Install the power generation unit (9) on the back of the inner support (803) using bolts, install the impeller shaft (10) on the input end of the power generation unit (9) using bolts, install the wind turbine (11) on the impeller shaft (10) using bolts, insert the inner support (803) into the air inlet slot (17) and pull it down until the inner support (803) enters the inside of the ear seat (801), and use the locking bolt one (805), the threaded hole one (802) and the threaded hole two (804) to install the inner support (803) on the ear seat (801); S7: Connect the lines between the power generation unit (9), the drive motor (4), the wind direction detector (16) and the control box (3), and at this time the installation is completed.
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