Wind power pole integrated on platform
By designing an integrated wind turbine pole on the platform and utilizing a combination structure of pole, seat, and canopy, the problem of poor structural safety of wind turbines on outdoor platforms has been solved, achieving a safe, aesthetically pleasing, and easy-to-install wind power generation solution.
Patent Information
- Application Number
- CN202520230162.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-13
AI Technical Summary
Wind turbines have poor structural safety when installed on outdoor platforms, and are difficult to promote and use in facilities with high traffic.
Design a wind turbine pole integrated into the platform. Through the combination structure of pole body, seat and canopy, improve installation stability by using mounting flanges and reinforcing plates, and use connection methods such as bolts, screws and nuts to ensure safe fixation of wind turbine.
It improves the safety and aesthetics of wind turbine installation, while not affecting the layout and space utilization of the station, and facilitates construction and installation operations.
Smart Images

Figure CN223707271U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of outdoor facility technology, and in particular to a wind turbine pole integrated into a platform. Background Technology
[0002] Electricity generated from clean energy sources such as wind and solar power has seen significant use in recent years due to its lack of environmental pollution. However, these power generation devices are often located in relatively remote and open areas, resulting in low adoption rates in cities. Outdoor platforms, such as bus stops or charging sheds, are typically situated outdoors, and while solar panels are commonly installed, wind turbines are rarely used. This is because safety concerns arise when applying these technologies to high-traffic areas, making their widespread adoption difficult. Utility Model Content
[0003] This utility model provides a wind turbine pole integrated into a platform to overcome the shortcomings of the prior art and solve the problem of poor structural safety when the wind turbine is installed on the platform, thus having strong practicality.
[0004] In order to achieve the purpose of this utility model, the following technology is proposed to be adopted:
[0005] A wind turbine pole integrated into a platform includes a pole body, a seat at the lower end of the pole body, a canopy on the pole body, and a wind turbine at the upper end of the pole body. The seat is located directly below the canopy, which is integrated into the platform canopy, while the wind turbine is located above the canopy. Connecting and securing the wind turbine to a separate pole body improves safety compared to directly mounting the wind turbine on the platform canopy, and this design is also aesthetically pleasing. Furthermore, the seat is integrated into the pole body to avoid negatively impacting the platform layout and space utilization.
[0006] Furthermore, to ensure the stability of the pole after installation, a mounting flange is welded to the lower end of the pole. Multiple first reinforcing plates are welded to the mounting flange. The first reinforcing plates are welded to the outer periphery of the lower end of the pole, and the mounting flange is installed on the ground by bolts.
[0007] Furthermore, the seat includes a mounting ring welded to the rod body. The lower wall of the mounting ring is welded with multiple first reinforcing plates. The inner ends of the first reinforcing plates are welded to the outer periphery of the rod body. The first reinforcing plates improve the fixing and support effect on the mounting ring, thereby increasing the weight capacity of the seat. Multiple mounting slots are provided on the mounting ring.
[0008] The mounting ring has a lower seat shell with a first hole. The rod passes through the first hole, and multiple bolts are installed in the mounting slot. The upper end of the bolts is threaded to the lower end of the lower seat shell, which has multiple oblong holes. Bolt installation is used here for ease of installation.
[0009] An outer support member extends upward from the outer periphery of the seat lower shell. The outer support member has an annular groove formed on it. The annular groove is used for fixing the seat to improve the overall aesthetics of the seat.
[0010] The upper end of the external support is provided with a cover, and a second hole is opened on the cover. The rod passes through the second hole. Multiple second reinforcing plates are welded to the lower wall of the cover. A sleeve is welded to the inner end of the second reinforcing plate. The sleeve is fitted onto the rod. The second reinforcing plate improves the connection strength between the sleeve and the cover. The sleeve is used to facilitate the positioning of the entire seat and improve the structural stability after installation.
[0011] A pad is mounted on the top cover using screws.
[0012] A cover is fitted onto the rod body and installed at the second hole to prevent water from entering the seat and to facilitate the installation of other components.
[0013] Furthermore, a notch is provided at the upper end of the first reinforcing plate, located at the weld between the mounting ring and the rod, to facilitate the welding operation between the first reinforcing plate, the mounting ring, and the rod.
[0014] Furthermore, the mounting slot has an arc-shaped structure, and it is formed with the center of the mounting ring as the center. This design structure facilitates the rotation and adjustment of the seat during installation, thereby improving the flexibility of the installation process.
[0015] Furthermore, the canopy includes an inner sleeve fitted onto the rod body. The inner sleeve has a through hole, and the rod body has a transverse hole. The through hole corresponds to the transverse hole, and a screw rod passes through both the through hole and the transverse hole. Nuts are threaded to both ends of the screw rod, with the inner end of the nut acting on the outer circumference of the inner sleeve. A rectangular hole is formed through both the rod body and the inner sleeve, and a pin plate, with a rectangular structure, passes through this hole. Screws are threaded to both ends of the pin plate. The pin plate limits the rod body and inner sleeve in one direction, facilitating the positioning of the inner sleeve during installation. The screw rod provides positioning in the other direction. By positioning the inner sleeve in two mutually perpendicular directions using the screw rod and the pin plate, the positioning effect is improved. Secondly, the screw rod at the upper end primarily prevents relative rotation between the rod body and the inner sleeve, while the pin plate, while providing positioning, also supports the inner sleeve.
[0016] At least four pipe fittings are welded to the lower end of the inner sleeve. Each pipe fitting has an end pipe welded to its outer end. Two adjacent end pipes are welded together to form a rectangular structure. A canopy ring is welded to the outside of the end pipe. A pair of inner through holes are symmetrically opened on the canopy ring. The platform canopy passes through the inner through holes, and the inner end of the platform canopy is fixed to the end pipe with bolts. The above structural design can improve the fixing effect of the canopy ring, etc. When the canopy and the platform canopy are connected, it is convenient to carry out precise installation.
[0017] At least one pair of crossbars are welded inside the roof ring. The crossbars are parallel to each other in length direction. The two ends of the crossbars are welded to the inner circumference of the roof ring, and the crossbars are also welded to the end pipe and fittings located at their lower ends. The crossbars further enhance the internal strength of the roof ring.
[0018] The ceiling ring has end rings formed at both the top and bottom ends. The lower end of the inner sleeve is welded with a lower ceiling plate, which is welded to the end ring at the bottom end. The weld is located inside the ceiling ring. This welding method can improve the aesthetics of the ceiling. The upper ceiling plate is installed on the end ring at the top end by screws.
[0019] Furthermore, the inner sleeve is connected by multiple positioning screws via threads. The inner end of the positioning screws acts on the outer periphery of the rod body, thereby enhancing the positioning effect between the inner sleeve and the rod body.
[0020] Furthermore, the height of the rectangular hole is greater than its width, and the narrow side of the pin plate contacts the upper inner wall of the rectangular hole. This design allows the pin plate to have a larger thickness in the main stress direction, thereby preventing deformation of the pin plate and improving the safety after installation and positioning.
[0021] Furthermore, a reinforcing ring is welded to the upper wall of the under-shelf panel, and a rib is welded to the inner wall of the reinforcing ring. The lower end of the rib is welded to the under-shelf panel. The structural strength of the under-shelf panel is improved by setting up the reinforcing ring and the rib.
[0022] Furthermore, an inner tube is inserted into the upper end of the pole body, and an upper ring is provided at the upper end of the inner tube. The upper ring is located at the upper end of the pole body, and the outline of the upper ring is larger than the size of the upper end of the pole body. A connecting middle tube is provided on the upper ring, and a cable routing hole is opened on the connecting middle tube. A mounting plate is provided at the upper end of the connecting middle tube. The mounting plate is bolted to the fixing flange at the lower end of the wind turbine. Multiple connecting screws are threaded to the outer circumference of the upper end of the pole body. The inner end of the connecting screws is threaded to the inner tube. The inner tube and other components are mainly for the convenience of installing the wind turbine.
[0023] The advantages of the above technical solution are:
[0024] This utility model rationally and aesthetically mounts the wind turbine on the platform, while also ensuring the safety of the wind turbine after installation and the centralization of the platform's functions, and facilitating construction, installation, and operation. Attached Figure Description
[0025] To make the objectives, technical solutions, and advantages of this utility model clearer, the following will provide a further detailed description of this utility model in conjunction with the accompanying drawings.
[0026] Figure 1 A front view of the wind turbine integrated into the platform is shown.
[0027] Figure 2 The three-dimensional structure of the wind turbine integrated into the platform is shown. Figure 1 .
[0028] Figure 3 A magnified view of point A is shown.
[0029] Figure 4 A three-dimensional structural diagram of the seat is shown.
[0030] Figure 5 A three-dimensional diagram of the seat's internal structure is shown.
[0031] Figure 6 The three-dimensional structure of the wind turbine integrated into the platform is shown. Figure 2 .
[0032] Figure 7 A magnified view of point B is shown.
[0033] Figure 8 A three-dimensional structural diagram of the ceiling is shown.
[0034] Figure 9 A magnified view of point C is shown. Detailed Implementation
[0035] like Figures 1 to 9 As shown, a wind turbine pole integrated into a platform includes a pole body 1, a seat 2 at the lower end of the pole body 1, a canopy 3 on the pole body 1, and a wind turbine 4 at the upper end of the pole body 1. The seat 2 is located directly below the canopy 3, and the canopy 3 is integrated into the platform canopy 9. The wind turbine 4 is located above the canopy 3.
[0036] A mounting flange 10 is welded to the lower end of the rod body 1. Multiple first reinforcing plates 11 are welded to the mounting flange 10. The first reinforcing plates 11 are welded to the outer periphery of the lower end of the rod body 1. The mounting flange 10 is installed on the ground by bolts.
[0037] The seat 2 includes a mounting ring 20 welded to the rod 1. The mounting ring 20 has a vertical hole 21 for wiring. Multiple first reinforcing plates 11 are welded to the lower wall of the mounting ring 20. The inner ends of the first reinforcing plates 11 are welded to the outer periphery of the rod 1. Multiple mounting slots 22 are provided on the mounting ring 20. The mounting slots 22 have an arc-shaped structure and are formed with the center of the mounting ring 20 as the center. The upper end of the first reinforcing plate 11 has a notch 25, which is located at the weld between the mounting ring 20 and the rod 1.
[0038] The mounting ring 20 has a seat lower shell 26, and the seat lower shell 26 also has vertical wiring holes 21, which correspond to and are connected to each other. The seat lower shell 26 has multiple oblong holes 27 and a first hole 28, through which the rod 1 passes. Multiple bolts 23 are provided in the mounting slot 22, and the upper ends of the bolts 23 are threaded to the lower end of the seat lower shell 26. An outer support member 29 extends upward from the outer periphery of the seat lower shell 26, and an annular groove 290 is formed on the outer support member 29. The upper end of the outer support member 29 has a cover 291, and a second hole 296 is provided on the cover 291, through which the rod 1 passes. Multiple second reinforcing plates 292 are welded to the lower wall of the cover 291, and a sleeve 295 is welded to the inner end of the second reinforcing plate 292, which is fitted onto the rod 1. A pad 297 is mounted on the top cover 291 by screws. A cover 298 is fitted onto the rod body 1, and the cover 298 is installed at the second hole 296.
[0039] The canopy 3 includes an inner sleeve 300 fitted onto the rod 1. Multiple positioning screws 301 are threaded onto the inner sleeve 300, with the inner ends of the screws 301 acting on the outer periphery of the rod 1. The inner sleeve 300 has a through hole 302, and the rod 1 has a transverse hole. The through hole 302 corresponds to the transverse hole, and a screw rod passes through both the through hole 302 and the transverse hole. Nuts are threaded onto both ends of the screw rod, with the inner ends of the nuts acting on the outer periphery of the inner sleeve 300. A rectangular hole is formed through both the rod 1 and the inner sleeve 300, and a pin plate 309 passes through this rectangular hole. The pin plate 309 has a rectangular structure, and screws are threaded onto both ends of the pin plate 309. The height of the rectangular hole is greater than its width, and the narrow side of the pin plate 309 contacts the upper inner wall of the rectangular hole.
[0040] At least four pipe fittings 303 are welded to the lower end of the inner sleeve 300. An end pipe 304 is welded to the outer end of each pipe fitting 303. Two adjacent end pipes 304 are welded together to form a rectangular structure. A canopy ring 305 is welded to the outside of the end pipe 304. A pair of inner through holes 308 are symmetrically opened on the canopy ring 305. The platform canopy 9 is installed through the inner through holes 308, and the inner end of the platform canopy 9 is fixed to the end pipe 304 by bolts.
[0041] At least one pair of crossbars 307 are welded inside the roof ring 305. The crossbars 307 are parallel to each other in the length direction. The two ends of the crossbars 307 are respectively welded to the inner circumference of the roof ring 305. The crossbars 307 are also welded to the end pipe 304 and the fitting 303 located at their lower ends.
[0042] The top and bottom ends of the canopy ring 305 are formed with end rings 306.
[0043] The lower end of the inner sleeve 300 is welded with a lower cover plate 314, which is welded to the end ring 306 located at the lower end, and the weld is located inside the top ring 305. The upper wall of the lower cover plate 314 is welded with a reinforcing ring 313, and the inner wall of the reinforcing ring 313 is welded with a rib plate 312, the lower end of the rib plate 312 is welded to the lower cover plate 314.
[0044] A top plate is mounted on the upper end ring 306 by screws.
[0045] An inner tube is inserted into the upper end of the pole body 1. An upper ring 52 is located at the upper end of the inner tube, and its outline is larger than the upper end of the pole body 1. A connecting middle tube 50 is provided on the upper ring 52, and a cable routing hole 51 is opened on the connecting middle tube 50. A mounting plate 5 is located at the upper end of the connecting middle tube 50, and the mounting plate 5 is bolted to the fixing flange 40 at the lower end of the wind turbine generator 4. Multiple connecting screws 53 are threadedly connected to the outer circumference of the upper end of the pole body 1, and the inner ends of the connecting screws 53 are threadedly connected to the inner tube.
[0046] Since the safety and other advantages of wind turbines integrated into the platform arise from their structure, which has already been described in the preceding sections, it will not be elaborated upon here. This embodiment uses the installation of such a wind turbine integrated into the platform as an example to illustrate its advantages in convenient construction and installation.
[0047] In this embodiment, during installation, the seat 2 is first fitted onto the pole 1, ensuring the bottom surface of the seat's lower shell 26 is tightly against the mounting ring 20. During installation, the mounting ring 20 is rotated to connect the vertical wiring hole 21. After adjustment, the seat's lower shell 26 is mounted onto the mounting ring 20 using bolts 23. Next, the finished canopy 3 is fitted onto the pole 1. During operation, the canopy 3 is rotated to connect the rectangular hole on the inner sleeve 300 with the rectangular hole on the pole 1, and the through hole 302 with the transverse hole. Then, the screw and pin plate 309 are inserted into their corresponding holes. The insertion length of the inner ends of each positioning screw 301 is adjusted to ensure the inner sleeve 300 and the pole 1 are coaxial. Finally, the screw and pin plate 309 are fixed using nuts and screws. Finally, the mounting plate 5 is bolted onto the fixing flange 40 at the lower end of the wind turbine 4. The inner tube is inserted into the upper end of the pole 1 and installed on the upper end of the pole 1 with connecting screws 53. Finally, the pole 1 is erected and installed on the pre-cast foundation with bolts. Then, the platform canopy 9 is installed, and the canopy plate on the roof 3 is installed on the roof 3 after installation.
[0048] The above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of this utility model. Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations of this utility model fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.
Claims
1. A wind turbine pole integrated into a platform, characterized in that, It includes a pole (1), a seat (2) at the lower end of the pole (1), a canopy (3) on the pole (1), and a wind turbine (4) at the upper end of the pole (1). The seat (2) is located directly below the canopy (3), and the canopy (3) is integrated into the platform canopy (9); The wind turbine (4) is located above the canopy (3).
2. The wind turbine pole integrated into the platform according to claim 1, characterized in that, A mounting flange (10) is welded to the lower end of the rod (1). Multiple first reinforcing plates (11) are welded to the mounting flange (10). The first reinforcing plates (11) are welded to the outer periphery of the lower end of the rod (1). The mounting flange (10) is installed on the ground by bolts.
3. The wind turbine pole integrated into the platform according to claim 1, characterized in that, The seat (2) includes a mounting ring (20) welded to the rod (1). Multiple first reinforcing plates (11) are welded to the lower wall of the mounting ring (20). The inner end of the first reinforcing plate (11) is welded to the outer periphery of the rod (1). Multiple mounting slots (22) are provided on the mounting ring (20). The mounting ring (20) is provided with a seat lower shell (26), and a first hole (28) is opened on the seat lower shell (26). The rod (1) passes through the first hole (28), and multiple bolts (23) are provided in the mounting slot (22). The upper end of the bolts (23) is connected to the lower end of the seat lower shell (26) by thread. An outer support member (29) extends upward from the outer periphery of the seat lower shell (26), and an annular groove (290) is formed on the outer support member (29). The upper end of the outer support (29) is provided with a top cover (291), and a second hole (296) is opened on the top cover (291). The rod (1) passes through the second hole (296). Multiple second reinforcing plates (292) are welded to the lower wall of the top cover (291). A sleeve (295) is welded to the inner end of the second reinforcing plate (292), and the sleeve (295) is sleeved on the rod (1). A pad (297) is mounted on the top cover (291) by screws. A cover (298) is fitted on the rod (1), and the cover (298) is installed at the second hole (296).
4. The wind turbine pole integrated into the platform according to claim 3, characterized in that, The upper end of the first reinforcing plate (11) has a notch (25), which is located at the weld between the mounting ring (20) and the rod (1).
5. The wind turbine pole integrated into the platform according to claim 3, characterized in that, The mounting slot (22) has an arc-shaped structure, and the mounting slot (22) is formed with the center of the mounting ring (20) as the center.
6. The wind turbine pole integrated into the platform according to claim 1, characterized in that, The canopy (3) includes an inner sleeve (300) fitted onto the rod (1). The inner sleeve (300) has a through hole (302), and the rod (1) has a transverse hole. The through hole (302) corresponds to the transverse hole, and a screw is inserted into the through hole (302) and the transverse hole. Nuts are connected to both ends of the screw by threads. The inner end of the nut acts on the outer periphery of the inner sleeve (300). A rectangular hole is opened through the rod (1) and the inner sleeve (300). A pin plate (309) is inserted into the rectangular hole. The pin plate (309) has a rectangular structure, and screws are connected to both ends of the pin plate (309) by threads. At least four pipe fittings (303) are welded to the lower end of the inner sleeve (300). Each pipe fitting (303) has an end pipe (304) welded to its outer end. Each pair of adjacent end pipes (304) are welded together to form a rectangular structure. A canopy ring (305) is welded to the outside of the end pipe (304). A pair of inner through holes (308) are symmetrically opened on the canopy ring (305). The platform canopy (9) is installed through the inner through holes (308), and the inner end of the platform canopy (9) is fixed to the end pipe (304) by bolts. At least one pair of crossbars (307) are welded inside the roof ring (305). The crossbars (307) are parallel to each other in the length direction. The two ends of the crossbars (307) are welded to the inner circumference of the roof ring (305) respectively. The crossbars (307) are also welded to the end pipe (304) and the fitting (303) located at its lower end. The top and bottom ends of the roof ring (305) are formed with end rings (306); The lower end of the inner sleeve (300) is welded with a lower plate (314), which is welded to the end ring (306) located at the lower end, and the weld is located inside the top ring (305). A top plate is mounted on the upper end ring (306) by screws.
7. The wind turbine pole integrated into the platform according to claim 6, characterized in that, Multiple positioning screws (301) are threadedly connected to the inner sleeve (300), and the inner end of the positioning screws (301) acts on the outer periphery of the rod (1).
8. The wind turbine pole integrated into the platform according to claim 6, characterized in that, The height of the rectangular hole is greater than its width, and the narrow side of the pin plate (309) contacts the upper inner wall of the rectangular hole.
9. The wind turbine pole integrated into the platform according to claim 6, characterized in that, A reinforcing ring (313) is welded to the upper wall of the under-shelf plate (314), and a rib (312) is welded to the inner wall of the reinforcing ring (313). The lower end of the rib (312) is welded to the under-shelf plate (314).
10. The wind turbine pole integrated into the platform according to claim 1, characterized in that, An inner tube is inserted into the upper end of the pole (1), and an upper ring (52) is provided at the upper end of the inner tube. The upper ring (52) is located at the upper end of the pole (1), and the outline of the upper ring (52) is larger than the size of the upper end of the pole (1). A connecting middle tube (50) is provided on the upper ring (52), and a wiring hole (51) is opened on the connecting middle tube (50). An installation plate (5) is provided at the upper end of the connecting middle tube (50), and the installation plate (5) is bolted to the fixing flange (40) at the lower end of the wind turbine (4). The upper outer circumference of the rod (1) is connected by multiple connecting screws (53) by threads, and the inner end of the connecting screws (53) is connected to the inner tube by threads.