Adjusting tool for wind aligning device of wind driven generator
By designing adjustable brackets and laser alignment components on the wind turbine, the problem of inaccurate installation of the ultrasonic wind measurement device of the wind turbine is solved, achieving higher air measurement accuracy and convenient installation process.
Patent Information
- Application Number
- CN202421712295.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-18
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-07-18
AI Technical Summary
In the prior art, the ultrasonic wind measurement device of a megawatt-level wind turbine cannot be accurately aligned when installed, which affects the wind measurement accuracy.
A wind turbine wind device adjustment tool is designed, including two adjustable brackets and auxiliary alignment components, and the laser generator block and the aiming block are used to achieve alignment to ensure that the alignment positions of the two adjustable brackets are the same when the laser beam is illuminated on the aiming point.
Through this tooling, the installation accuracy of the two sets of ultrasonic air measurement devices is higher, which effectively improves the air measurement accuracy, simplifies the installation and adjustment process, and reduces the difficulty of maintenance.
Smart Images

Figure CN222879809U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wind power generation, in particular to a wind device regulating tool for a wind power generator. Background Art
[0002] With the rapid development of wind power generation technology, megawatt-class wind turbines have become mainstream. In order to ensure the efficient and safe operation of wind turbines, accurate measurement of wind speed and direction is essential. At present, megawatt-class wind turbines are usually equipped with two sets of ultrasonic wind measuring devices on the top of the nacelle. The two sets of ultrasonic wind measuring devices constitute an important part of the wind turbine's wind control device, and play an important role in adjusting the wind turbine output, optimizing performance, and ensuring safe operation under extreme weather conditions.
[0003] The two sets of ultrasonic wind measuring devices installed on the top of the wind turbine nacelle need to be precisely aligned. The existing technology solves the alignment problem of the wind vane (ultrasonic wind measuring device) through a fine-tuning knob tooling platform on the top of the tripod, but this design does not fully improve the accuracy of the anemometer measurement. Therefore, it is urgent to design a wind turbine wind device adjustment tooling to enable the two sets of ultrasonic wind measuring devices to be precisely aligned. Utility Model Content
[0004] The utility model aims to provide a wind turbine wind device adjusting tool, which effectively solves the technical problem in the prior art that two sets of wind measuring devices cannot be accurately aligned when installed.
[0005] In order to solve the above technical problems, the utility model provides the following technical solutions:
[0006] A wind turbine wind device adjustment tool, comprising two adjustable brackets and an auxiliary alignment assembly; the adjustable bracket is provided with a first connection portion for connecting with a wind measuring device; the auxiliary alignment assembly comprises a laser generating block and a sighting block, the laser generating block is provided with a second connection portion cooperating with the first connection portion, and the sighting block is provided with a third connection portion cooperating with the first connection portion;
[0007] Among them, when the laser generating block is connected with one of the adjustable brackets and the aiming block is connected with another adjustable bracket, when the adjustable bracket on which the aiming block is installed is adjusted so that the laser beam emitted by the laser generating block is irradiated onto the aiming point of the aiming block, the relative position of the straight line where the laser beam is located relative to the second connecting part is the same as the relative position relative to the third connecting part.
[0008] Optionally, the adjustable bracket includes a fixed bracket and a movable bracket, the lower part of the fixed bracket is fixedly connected to the nacelle of the wind turbine, the lower part of the movable bracket is sleeved on the upper part of the fixed bracket, the side wall of the movable bracket is provided with a threaded through hole, an adjusting bolt is threaded in the threaded through hole, and when the adjusting bolt is tightened, the inner end of the adjusting bolt can be abutted against the outer wall of the fixed bracket, and when the adjusting bolt is loosened, the movable bracket can rotate and move up and down relative to the fixed bracket.
[0009] Optionally, the adjusting bolt is a butterfly bolt.
[0010] Optionally, the bolt rod of the adjusting bolt is provided with scale lines.
[0011] Optionally, an even number of threaded through holes are provided on the side wall of the movable bracket, and the even number of threaded through holes are divided into two groups and symmetrically arranged on both sides of the side wall of the movable bracket, and the threaded through holes on each side of the movable bracket are spaced apart from each other up and down.
[0012] Optionally, the laser generating block includes a laser generator and a connecting block, the laser generator is clamped and connected to the upper part of the connecting block, and the second connecting part is arranged at the lower part of the connecting block.
[0013] Optionally, a level is integrally provided on the laser generator.
[0014] Optionally, the first connection portion includes a first horizontal plane located at the upper part of the adjustable bracket and a first vertical plane perpendicular to and adjacent to the first horizontal plane, and a first connecting through hole is further provided on the first vertical plane; the second connection portion includes a second horizontal plane located at the lower part of the laser generating block and a second vertical plane perpendicular to and adjacent to the second horizontal plane, and a second connecting through hole is further provided on the second vertical plane; the third connection portion includes a third horizontal plane located at the lower part of the laser generating block and a third vertical plane perpendicular to and adjacent to the third horizontal plane, and a third connecting through hole is further provided on the third vertical plane;
[0015] Wherein, when the adjustable bracket is connected to the laser generating block, the first horizontal plane is aligned with the second horizontal plane, the first vertical plane is aligned with the second vertical plane, and fasteners are screwed into the first connecting through hole and the second connecting through hole; when the adjustable bracket is connected to the aiming block, the first horizontal plane is aligned with the third horizontal plane, the first vertical plane is aligned with the third vertical plane, and fasteners are screwed into the first connecting through hole and the second connecting through hole.
[0016] Optionally, the fastener is a fastener with a knob.
[0017] Optionally, the vertical distance of the laser beam relative to the second horizontal plane is the same as the vertical distance of the aiming point relative to the third horizontal plane; the laser beam is parallel to the second vertical plane, and the horizontal distance of the laser beam relative to the second vertical plane is the same as the horizontal distance of the aiming point relative to the third vertical plane.
[0018] The wind turbine wind device adjustment tooling provided in the embodiment of the utility model cooperates with the adjustable bracket, the laser generating block and the aiming block, which not only makes the installation accuracy of the two sets of ultrasonic wind measuring devices higher and effectively improves the wind measurement accuracy, but also simplifies the installation and adjustment process of the tooling, making the operation more convenient and reducing the difficulty of maintenance. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0020] Figure 1 A schematic diagram of the principle structure of a wind turbine wind adjustment device provided in a specific implementation mode of the utility model;
[0021] Figure 2 A schematic diagram of the structure of an adjustable bracket provided in a specific implementation manner of the utility model;
[0022] Figure 3 A schematic diagram of the structure of an adjusting bolt provided in a specific implementation manner of the utility model;
[0023] Figure 4 A schematic diagram of the main structure of a laser generating block provided in a specific embodiment of the utility model;
[0024] Figure 5 for Figure 4 A right view structural diagram of ;
[0025] Figure 6 A schematic diagram of the main structure of the aiming block provided in a specific implementation manner of the utility model;
[0026] Figure 7 for Figure 6 Schematic diagram of the left view structure.
[0027] The following are marked in the accompanying drawings:
[0028] 1. Adjustable bracket; 11. First connecting part; 111. First horizontal plane; 112. First vertical plane; 113. First connecting through hole; 12. Fixed bracket; 13. Movable bracket; 131. Adjusting bolt; 1311. Scale line; 14. Power cord; 2. Laser generating block; 21. Second connecting part; 211. Second horizontal plane; 212. Second vertical plane; 213. Second connecting through hole; 22. Laser generator; 221. Level; 23. Connecting block; 24. Laser beam; 3. Aiming block; 31. Third connecting part; 311. Third horizontal plane; 312. Third vertical plane; 313. Third connecting through hole; 32. Aiming point; 4. Fastener. DETAILED DESCRIPTION
[0029] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0030] Please refer to Figures 1 to 7 , Figure 1 A schematic diagram of the principle structure of a wind turbine wind adjustment device provided in a specific implementation mode of the utility model; Figure 2 A schematic diagram of the structure of an adjustable bracket provided in a specific implementation manner of the utility model; Figure 3 A schematic diagram of the structure of an adjusting bolt provided in a specific implementation manner of the utility model; Figure 4 A schematic diagram of the main structure of a laser generating block provided in a specific embodiment of the utility model; Figure 5 for Figure 4 A right view structural diagram of ; Figure 6 A schematic diagram of the main structure of the aiming block provided in a specific implementation manner of the utility model; Figure 7 for Figure 6 Schematic diagram of the left view structure.
[0031] In a specific embodiment, the wind turbine wind adjustment device provided by the utility model includes two adjustable brackets 1 and an auxiliary alignment assembly. The adjustable bracket 1 is provided with a first connection portion 11 for connecting to a wind measuring device (not shown in the figure). The auxiliary alignment assembly includes a laser generating block 2 and an aiming block 3, the laser generating block 2 is provided with a second connection portion 21 that cooperates with the first connection portion 11, and the aiming block 3 is provided with a third connection portion 31 that cooperates with the first connection portion 11. Among them, when the laser generating block 2 is connected with one adjustable bracket 1 and the aiming block 3 is connected with another adjustable bracket 1, when the adjustable bracket 1 on which the aiming block 3 is installed is adjusted so that the laser beam 24 emitted by the laser generating block 2 is irradiated onto the aiming point 32 of the aiming block 3, the relative position of the straight line where the laser beam 24 is located relative to the second connection portion 21 and the relative position of the straight line where the laser beam 24 is located relative to the third connection portion 31 are the same.
[0032] When using the wind turbine wind adjustment tooling provided by the embodiment of the utility model to align two sets of ultrasonic wind measuring devices, first, the laser generating block 2 is connected to an adjustable bracket 1 and the aiming block 3 is connected to another adjustable bracket 1, and then observe whether the laser beam 24 emitted by the laser generating block 2 is irradiated on the aiming point 32 of the aiming block 3. If not, adjust the adjustable bracket 1 on which the aiming block 3 is installed so that the laser beam 24 is irradiated on the aiming point 32 of the aiming block 3. Since the relative position of the straight line where the laser beam 24 is located relative to the second connecting part 21 and the relative position of the straight line where the laser beam 24 is located relative to the third connecting part 31 are the same, and the straightness of the laser beam 24 is high, the two adjustable brackets 1 can be accurately aligned at this time.
[0033] In actual use, in order to ensure the alignment accuracy of the two adjustable brackets 1, it is necessary to further exchange the laser generating block 2 and the aiming block 3 on the two adjustable brackets 1, and then use the same steps as above to calibrate the alignment of the adjustable brackets 1 to ensure the alignment accuracy of the two adjustable brackets 1. In order to ensure stability and reliability in long-term operation, the laser generator and the aiming block 3 can also be restarted for re-inspection. After determining that the alignment accuracy of the two adjustable brackets 1 is adjusted, finally install ultrasonic wind measuring devices on the two adjustable brackets 1 respectively, which can ensure the alignment accuracy of the two sets of ultrasonic wind measuring devices and enhance the stability of the entire wind power generation system.
[0034] In addition, when the wind turbine wind adjustment tooling provided by the embodiment of the utility model aligns two sets of wind measuring devices, it is convenient to observe whether the laser of the laser generating block 2 is irradiated on the aiming point 32 next to the adjustable bracket 1 for installing the aiming block 3. At the same time, the adjustable bracket 1 for installing the aiming block 3 is easy to adjust, easy to operate and maintain.
[0035] Therefore, the wind turbine wind device adjustment tooling provided in the embodiment of the utility model cooperates with the adjustable bracket 1, the laser generating block 2 and the aiming block 3, which not only makes the installation accuracy of the two sets of ultrasonic wind measuring devices higher and effectively improves the wind measurement accuracy, but also simplifies the installation and adjustment process of the tooling, making the operation more convenient and reducing the difficulty of maintenance.
[0036] In a specific embodiment, the adjustable bracket 1 includes a fixed bracket 12 and a movable bracket 13, the lower part of the fixed bracket 12 is fixedly connected to the nacelle of the wind turbine, the lower part of the movable bracket 13 is sleeved on the upper part of the fixed bracket 12, a threaded through hole is provided on the side wall of the movable bracket 13, an adjusting bolt 131 is screwed into the threaded through hole, the inner end of the adjusting bolt 131 can be against the outer wall of the fixed bracket 12 after being tightened, and the movable bracket 13 can be rotated and moved up and down relative to the fixed bracket 12 after the adjusting bolt 131 is loosened. The adjustable bracket 1 in this embodiment is lighter than a tripod, significantly reduces the volume and weight of the adjustment tooling device, thereby improving the convenience of carrying and operation, so that the tooling device can adapt to more complex installation environments, especially in space-constrained conditions, such as operating in the confined space on the top of the wind turbine nacelle (only 2 square meters of operating space).
[0037] Preferably, the fixed bracket 12 and the movable bracket 13 are both configured as hollow structures, and a power line 14 of the ultrasonic wind measuring device can be led out from the side opening of the movable bracket 13 .
[0038] In a specific embodiment, the adjusting bolt 131 is a butterfly bolt, which is convenient for manual tightening during later maintenance, thereby reducing the number of tools carried by maintenance personnel.
[0039] In a specific embodiment, a scale line 1311 is provided on the bolt rod of the adjusting bolt 131. On the one hand, during maintenance, it is possible to determine whether retightening is required based on the scale line value. On the other hand, when tightening, the degree of tightening can be controlled based on the scale line. When adjusting bolts 131 are provided on both sides of the movable bracket 13, it is convenient to control the tightening degree on both sides.
[0040] In a specific embodiment, an even number of threaded through holes are provided on the side wall of the movable bracket 13, and the even number of threaded through holes are divided into two groups and symmetrically arranged on both sides of the side wall of the movable bracket 13, and the threaded through holes on each side of the movable bracket 13 are arranged spaced apart from each other. Specifically, two threaded through holes spaced apart from each other are provided on each side of the movable bracket 13 in this embodiment, and the movable bracket 13 and the fixed bracket 12 can be connected by a plurality of symmetrical adjusting bolts 131, so as to ensure the stability of the connection between the movable bracket 13 and the fixed bracket 12 in the harsh environment of the top of the nacelle of a large wind turbine (a wind farm located at an altitude of 100 meters).
[0041] In a specific embodiment, the laser generating block 2 includes a laser generator 22 and a connecting block 23, the laser generator 22 is clamped and connected to the upper part of the connecting block 23, and the second connecting portion 21 is arranged at the lower part of the connecting block 23. In this way, it is convenient to directly use a commercially available laser generator, and when manufacturing the laser generating block 2, only a connecting block 23 matching the adjustable bracket 1 needs to be processed and manufactured, and the appearance of the laser generator 22 does not need to be changed, and the processing and manufacturing are convenient.
[0042] On the basis of the above embodiment, a level 221 is integrally provided on the laser generator 22, so that the laser generator 22 itself can be leveled by adjusting the adjustment parts of the laser generator 22 through the air bubble indicator on the level 221, so that the laser of the laser generating block 2 can be horizontally irradiated onto the aiming point 32 of the aiming block 3.
[0043] In a specific embodiment, the first connection portion 11 includes a first horizontal plane 111 located at the upper part of the adjustable bracket 1 and a first vertical plane 112 perpendicular to and adjacent to the first horizontal plane 111, and a first connection through hole 113 is also provided on the first vertical plane 112. The second connection portion 21 includes a second horizontal plane 211 located at the lower part of the laser generating block 2 and a second vertical plane 212 perpendicular to and adjacent to the second horizontal plane 211, and a second connection through hole 213 is also provided on the second vertical plane 212. The third connection portion 31 includes a third horizontal plane 311 located at the lower part of the laser generating block 2 and a third vertical plane 312 perpendicular to and adjacent to the third horizontal plane 311, and a third connection through hole 313 is also provided on the third vertical plane 312.
[0044] When the adjustable bracket 1 is connected to the laser generating block 2, the first horizontal plane 111 is aligned with the second horizontal plane 211, the first vertical plane 112 is aligned with the second vertical plane 212, and the fastener 4 is screwed into the first connecting through hole 113 and the second connecting through hole 213. When the adjustable bracket 1 is connected to the aiming block 3, the first horizontal plane 111 is aligned with the third horizontal plane 311, the first vertical plane 112 is aligned with the third vertical plane 312, and the fastener 4 is screwed into the first connecting through hole 113 and the second connecting through hole 213.
[0045] In this way, the connection position of the adjustable bracket 1 and the laser generating block 2 can be relatively fixed, and the connection position of the adjustable bracket 1 and the aiming block 3 can be relatively fixed, so that the two adjustable brackets 1 can be easily aligned through the correspondence between the laser of the laser generating block 2 and the aiming point 32 of the aiming block 3.
[0046] It is understandable that the first horizontal plane 111 (the second horizontal plane 211, the third horizontal plane 311) and the first vertical plane 112 (the second vertical plane 212, the third vertical plane 312) may not be perpendicular, which does not affect the realization of the function of this solution, but it is inconvenient to process, manufacture and position.
[0047] Preferably, in this embodiment, the first horizontal plane 111 and the first vertical plane 112 constitute a positive angle, the second horizontal plane 211 and the second vertical plane 212 constitute a negative angle, and the third horizontal plane 311 and the third vertical plane 312 constitute a negative angle, so that the adjustable bracket 1 is conveniently connected to the laser generating block 2, the aiming block 3 and the ultrasonic wind measuring device.
[0048] In a specific embodiment, the fastener 4 is a fastener with a knob, which facilitates manual connection of the adjustable bracket 1 with the laser generating block 2 and the aiming block 3 .
[0049] In a specific embodiment, preferably, the vertical distance of the laser beam 24 emitted by the laser generating block 2 relative to the second horizontal plane 211 is the same as the vertical distance of the aiming point 32 relative to the third horizontal plane 311. The laser beam 24 emitted by the laser generating block 2 is parallel to the second vertical plane 212, and the horizontal distance of the laser beam 24 emitted by the laser generating block 2 relative to the second vertical plane 212 is the same as the horizontal distance of the aiming point 32 relative to the third vertical plane 312. That is, when the laser beam 24 emitted by the laser generating block 2 is horizontally irradiated onto the aiming point 32, the second horizontal plane 211 is coplanar with the third horizontal plane 311, and the second vertical plane 212 is coplanar with the third vertical plane 312. It can be understood that at this time, the first horizontal plane 111 and the first vertical plane 112 of the two adjustable brackets 1 are both coplanar, and at this time, the two adjustable brackets 1 are aligned.
[0050] The specific process of installing two sets of ultrasonic wind measuring devices on the wind turbine wind adjustment tool provided by the embodiment of the utility model is as follows:
[0051] Step 1: Installation of laser generator block 2
[0052] The laser generating block 2 is precisely mounted on the movable bracket 13 of the first adjustable bracket 1 .
[0053] Step 2: Installation of aiming block 3
[0054] The aiming block 3 is installed on the movable bracket 13 of the second adjustable bracket 1 , and the position of the aiming block 3 needs to correspond to the laser generating block 2 to ensure that the laser emitted by the laser generating block 2 can directly irradiate the aiming block 3 .
[0055] Step 3: Adjustment and start-up of laser generator block 2
[0056] Adjust the button on the laser generator 22 of the laser generating block 2 to make the laser generator 22 level, and refer to the air bubble indicator in the level 221 on the laser generator 22 to ensure that the air bubble is between the two indicator lines. After wearing the special laser marking goggles, turn on the laser generator 22 and start emitting laser.
[0057] Step 4: Laser Alignment Detection
[0058] Observe whether the laser is directly irradiated on the aiming point 32 of the aiming block 3. To avoid looking directly at the laser, a shielding object may be used to assist in observing the projection position of the laser.
[0059] Step 5: Adjust the position of the second adjustable bracket 1 for mounting the aiming block 3
[0060] If the laser does not accurately irradiate the aiming point 32, it is necessary to loosen the adjustment bolt on the movable bracket 13 of the second adjustable bracket 1. Then, adjust the position of the movable bracket 13 relative to the fixed bracket 12 until the laser accurately irradiates the aiming point 32. After that, re-tighten the adjustment bolt 131 on the movable bracket 13 to ensure that the movable bracket 13 is stable.
[0061] Step 6: Confirm laser pointing again
[0062] After tightening the adjusting bolt 131 on the movable bracket 13 for mounting the aiming block 3, it is necessary to confirm again whether the laser beam is still accurately pointing to the aiming point 32 to ensure the accuracy of the alignment process.
[0063] Step 7: Install and calibrate the first adjustable bracket 1 of the laser generator block 2
[0064] Install the aiming block 3 on the movable bracket 13 of the first adjustable bracket 1, install the laser generating block 2 on the movable bracket 13 of the second adjustable bracket 1, and calibrate the first adjustable bracket 1 and the adjustable bracket 1 according to the same steps as above to ensure the alignment accuracy of the two adjustable brackets 1, thereby ensuring the alignment accuracy of the two ultrasonic wind measuring devices after installation.
[0065] Step 8: Re-examination
[0066] After completing the calibration of the two adjustable brackets 1, restart the laser generating block 2 and the aiming block 3 and perform a recheck according to the above steps to ensure the accuracy of the calibration. This step is very important to ensure stability and reliability in long-term operation.
[0067] Step 9: Installation of two ultrasonic wind measuring devices
[0068] Finally, two sets of ultrasonic wind measuring devices are installed on two calibrated adjustable brackets 1. During installation, it is necessary to ensure that the ultrasonic wind measuring devices are stable and accurately aligned so as to capture accurate wind speed data.
[0069] The various embodiments in this specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other.
[0070] The wind turbine wind device adjustment tooling provided by the utility model is introduced in detail above. Specific examples are used in this article to illustrate the principle and implementation method of the utility model. The description of the above embodiments is only used to help understand the method and core idea of the utility model. It should be pointed out that for ordinary technicians in this technical field, without departing from the principle of the utility model, the utility model can also be improved and modified, and these improvements and modifications also fall within the scope of protection of the claims of the utility model. Therefore, the utility model will not be limited to the embodiments shown in this article, but will conform to the widest range consistent with the principles and novel features disclosed in this article.
Claims
1. A wind turbine wind device adjustment tool, characterized in that: include: Two adjustable brackets (1), each of the adjustable brackets (1) being provided with a first connecting portion (11) for connecting to a wind measuring device; as well as An auxiliary alignment component, the auxiliary alignment component comprising a laser generating block (2) and a sighting block (3), the laser generating block (2) being provided with a second connecting portion (21) cooperating with the first connecting portion (11), and the sighting block (3) being provided with a third connecting portion (31) cooperating with the first connecting portion (11); When the laser generating block (2) is connected to one of the adjustable brackets (1) and the aiming block (3) is connected to another adjustable bracket (1), the adjustable bracket (1) on which the aiming block (3) is mounted is adjusted so that the laser beam (24) emitted by the laser generating block (2) is irradiated onto the aiming point (32) of the aiming block (3), and the relative position of the straight line where the laser beam (24) is located relative to the second connecting part (21) and the relative position relative to the third connecting part (31) are the same.
2. The wind turbine wind device adjustment tooling according to claim 1 is characterized in that: The adjustable bracket (1) comprises a fixed bracket (12) and a movable bracket (13); the lower portion of the fixed bracket (12) is fixedly connected to the nacelle of the wind turbine; the lower portion of the movable bracket (13) is sleeved on the upper portion of the fixed bracket (12); a threaded through hole is provided on the side wall of the movable bracket (13); an adjusting bolt (131) is screwed into the threaded through hole; when the adjusting bolt (131) is tightened, the inner end thereof can abut against the outer side wall of the fixed bracket (12); when the adjusting bolt (131) is loosened, the movable bracket (13) can rotate and move up and down relative to the fixed bracket (12).
3. The wind turbine wind device adjustment tooling according to claim 2 is characterized in that: The adjusting bolt (131) is a butterfly bolt.
4. The wind turbine wind device adjustment tooling according to claim 2, characterized in that: The bolt rod of the adjusting bolt (131) is provided with a scale mark (1311).
5. The wind turbine wind device adjustment tooling according to claim 2, characterized in that: An even number of threaded through holes are provided on the side wall of the movable bracket (13); the even number of threaded through holes are divided into two groups and symmetrically arranged on both sides of the side wall of the movable bracket (13); and the threaded through holes on each side of the movable bracket (13) are spaced apart from each other up and down.
6. The wind turbine wind device adjustment tooling according to claim 1, characterized in that: The laser generating block (2) comprises a laser generator (22) and a connecting block (23); the laser generator (22) is clamped and connected to the upper part of the connecting block (23); and the second connecting part (21) is arranged at the lower part of the connecting block (23).
7. The wind turbine wind device adjustment tooling according to claim 6, characterized in that: The laser generator (22) is integrally provided with a level meter (221).
8. The wind turbine wind device adjustment tool according to any one of claims 1 to 7, characterized in that: The first connecting portion (11) comprises a first horizontal plane (111) located at the upper part of the adjustable bracket (1) and a first vertical plane (112) perpendicular to and adjacent to the first horizontal plane (111), and a first connecting through hole (113) is also provided on the first vertical plane (112); the second connecting portion (21) comprises a second horizontal plane (211) located at the lower part of the laser generating block (2) and a second vertical plane (212) perpendicular to and adjacent to the second horizontal plane (211), and a second connecting through hole (213) is also provided on the second vertical plane (212); the third connecting portion (31) comprises a third horizontal plane (311) located at the lower part of the laser generating block (2) and a third vertical plane (312) perpendicular to and adjacent to the third horizontal plane (311), and a third connecting through hole (313) is also provided on the third vertical plane (312); Wherein, when the adjustable bracket (1) is connected to the laser generating block (2), the first horizontal plane (111) is in contact with the second horizontal plane (211), the first vertical plane (112) is in contact with the second vertical plane (212), and the fastener (4) is screwed into the first connecting through hole (113) and the second connecting through hole (213); when the adjustable bracket (1) is connected to the aiming block (3), the first horizontal plane (111) is in contact with the third horizontal plane (311), the first vertical plane (112) is in contact with the third vertical plane (312), and the fastener (4) is screwed into the first connecting through hole (113) and the second connecting through hole (213).
9. The wind turbine wind device adjustment tooling according to claim 8, characterized in that: The fastener (4) is a fastener (4) with a knob.
10. The wind turbine wind device adjustment tooling according to claim 8, characterized in that: The vertical distance of the laser beam (24) relative to the second horizontal plane (211) is the same as the vertical distance of the aiming point (32) relative to the third horizontal plane (311); the laser beam (24) is parallel to the second vertical plane (212), and the horizontal distance of the laser beam (24) relative to the second vertical plane (212) is the same as the horizontal distance of the aiming point (32) relative to the third vertical plane (312).