A light source device based on non-natural wind energy power generation induction
Patent Information
- Application Number
- CN202521225590.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-16
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-06-16
AI Technical Summary
目前,在风力发电的过程中所使用的各种风力发电装置存在运行不平稳、风能转化率较低和应用面较窄
装置结构简单、易拆卸,将非自然风能转化为高速公路可利用能源,提高了能源的利用率,符合绿色低碳经济的理念,和原有高速公路的引导光源相比较,减少了维修成本且不需要统一供电,本装置产生的电能自给自足并不会受到外界风力和雨水的影响,能带来较高的经济效益。
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Figure CN224786935U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of induced light source devices, specifically, it relates to an induced light source device based on non-natural wind power generation. Background Technology
[0002] Numerous usable energy sources exist in nature. Currently, those recognized and developed include solar energy, wind energy, tidal energy, and geothermal energy. Among these, wind energy plays an immeasurable role. While wind is a readily available energy source, the non-natural wind energy generated by high-speed vehicles has not yet been fully developed and utilized. Currently, various wind power generation devices used in wind power generation suffer from unstable operation, low wind energy conversion rates, and limited application. Therefore, developing wind power generation devices with stable operation, high conversion rates, and wider applicability is of great significance.
[0003] To address these shortcomings, a non-natural wind power generation induced light source device is proposed. Utility Model Content
[0004] The technical problem to be solved by this utility model is to overcome the shortcomings of the existing technology and provide a non-natural wind power generation induced light source device.
[0005] To solve the above-mentioned technical problems, the basic concept of the technical solution adopted by this utility model is as follows: A non-natural wind power generation induced light source device includes two air-leaking rotating cylinders, an LED light-emitting guide plate is arranged between the two air-leaking rotating cylinders, a dual-shaft generator is arranged inside the LED light-emitting guide plate, a rotating gear and two couplings are arranged on the dual-shaft generator, multiple fixing components are arranged on the couplings, a rotating main shaft is snapped onto the couplings, a double S-shaped propeller is arranged on the rotating main shaft, and sealing plates are arranged at the upper end and the lower end of the air-leaking rotating cylinders. The fixing assembly includes a support column fixed to the outer wall of the coupling, a support plate placed at one end of the support column, and the outer wall of the support plate snapping into the inner wall of the air-leaking rotating cylinder.
[0006] Optionally, multiple fixing holes are provided on the upper and lower edges of the LED light-emitting guide plate. A first fixing bolt is provided in the fixing hole, and a connecting piece is fitted on the first fixing bolt. The connecting piece is attached to the outer wall of the air-leaking rotating cylinder.
[0007] Optionally, the support plate has a first threaded hole and a placement groove, one end of the first fixing bolt is threaded into the first threaded hole, and one end of the support column is located in the placement groove.
[0008] Optionally, the coupling has a placement hole, one end of the rotating main shaft is located in the placement hole, and the coupling is provided with a second fixing bolt, one end of which is engaged with the outer wall of the rotating main shaft.
[0009] Optionally, two arc-shaped plates are placed on the outer wall of the air-leaking rotating cylinder, with connecting plates and fixing plates on the connecting plates.
[0010] Optionally, the fixing plate has multiple guide holes, and a positioning pin is slidably fitted in the guide holes. A fixing plate is provided at the end of the positioning pin away from the fixing plate, and a spring is provided between the fixing plate and the fixing plate. The spring is located on the positioning pin.
[0011] Optionally, two fixing blocks are provided on the arc plate, and a lead screw is provided on the fixing block. A rotating cylinder is threaded between two adjacent lead screws. Both ends of the rotating cylinder are provided with second threaded holes. The threads of the two second threaded holes are opposite in direction, and one end of the lead screw is threaded into the second threaded hole.
[0012] Optionally, a rubber pad is provided on the inner wall of the arc-shaped plate, and the rubber pad cooperates with the outer wall of the air-leaking rotating cylinder.
[0013] By adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art. Of course, any product implementing the present invention does not necessarily need to achieve all of the following advantages at the same time: The device has a simple structure and is easy to disassemble. It converts non-natural wind energy into usable energy for highways, improving energy utilization and conforming to the concept of green and low-carbon economy. Compared with the original guide lights for highways, it reduces maintenance costs and does not require a unified power supply. The electricity generated by this device is self-sufficient and is not affected by external wind and rain, which can bring high economic benefits.
[0014] With a simple principle and structure, low equipment maintenance costs, and reasonable utilization of non-natural wind resources during driving, it is green and environmentally friendly. The guiding light source can guide and warn oncoming vehicles, and has high practical value.
[0015] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings. Attached Figure Description
[0016] The accompanying drawings described below are merely some embodiments. Those skilled in the art can obtain other drawings based on these drawings without any creative effort. In the drawings: Figure 1 This is a three-dimensional structural diagram of an embodiment of the present utility model; Figure 2 This is a schematic diagram of a double S-shaped propeller blade structure according to an embodiment of the present invention; Figure 3 This is a schematic diagram of the installation structure according to an embodiment of the present invention; Figure 4 This is a schematic diagram of an arc-shaped plate structure according to an embodiment of the present invention.
[0017] The attached diagram lists the components represented by each number as follows: 1. Rotating main shaft; 2. Rotating gear; 3. Dual-shaft generator; 4. First fixing bolt; 5. Air-leaking rotating cylinder; 6. Double S-shaped propeller blades; 7. LED light-emitting guide plate; 8. Coupling; 9. Second fixing bolt; 10. Placement hole; 12. Support column; 13. Support plate; 14. Placement groove; 15. First threaded hole; 16. Sealing plate; 17. Fixing plate; 18. Connecting plate; 19. Guide hole; 20. Positioning pin; 21. Fixing disc; 22. Spring; 23. Arc plate; 24. Fixing block; 25. Lead screw; 26. Rotating cylinder; 27. Second threaded hole; 28. Rubber pad.
[0018] It should be noted that these accompanying drawings and textual descriptions are not intended to limit the scope of the present invention in any way, but rather to illustrate the concept of the present invention to those skilled in the art by referring to specific embodiments. Detailed Implementation
[0019] The present invention will now be described in further detail with reference to the accompanying drawings.
[0020] Please see Figure 1-4 As shown, this embodiment provides a non-natural wind power generation induced light source device, including two air-leaking rotating cylinders 5. The air-leaking rotating cylinders 5 utilize aerodynamic principles, using the strong airflow generated by a high-speed car to drive the rotating cylinders 5 to rotate. This rotating airflow drives the rotating blades to generate electricity, converting wind energy into electrical energy. An LED light-emitting guide plate 7 is arranged between the two air-leaking rotating cylinders 5. A dual-shaft generator 3 is installed inside the LED light-emitting guide plate 7. The dual-shaft generator 3 is equipped with a rotating gear 2 and two couplings 8. The rotating double S-shaped propeller blades 6 of the dual-shaft generator 3 are connected by the rotating gear 2, which has a meshing structure, thus forming a generator effect. It should generate electrical energy. The coupling 8 is equipped with multiple fixed components. The main rotating shaft 1 is snapped into the coupling 8. The main rotating shaft 1 is equipped with double S-propellers 6. The S-propellers 6 adopt a screw-fit three-blade structure. The blades are made of lightweight and corrosion-resistant materials. The air inside the air-leaking rotating cylinder 5 generates energy to drive the S-propellers 6 to rotate. The upper and lower ends of the air-leaking rotating cylinder 5 are equipped with sealing plates 16. The dual-shaft generator 3 adopts a simple coil generator and uses airflow to accelerate its heat dissipation. The central luminous guide beacon is composed of LED light sources and is powered by the dual-shaft generator 3. It has the characteristics of long life and continuous light emission. It is used as a visual guidance device on highways. The fixed assembly includes a support column 12 fixed to the outer wall of the coupling 8. A support plate 13 is placed at one end of the support column 12, and the outer wall of the support plate 13 is snapped onto the inner wall of the air-leaking rotating cylinder 5. The power generation induction light source device is divided into three parts: upper, middle, and lower. The upper and lower parts both use symmetrical double S-shaped propeller blades 6 to collect wind energy, which drives the rotating gears 2 at the upper and lower ends to rotate and convert wind energy into electrical energy. The middle dual-shaft generator 3 is equipped with LED light sources on its outer side, which provide light sources at sharp curves on highways, in tunnels, and at night to guide the driver's alignment.
[0021] Specifically, the strong airflow generated by the car traveling at high speed enters the air-leaking rotating cylinder 5, and the airflow drives the double S-propeller propeller 6 (twisted three-blade structure) to rotate. The double S-propeller propeller 6 drives the rotating main shaft 1 to rotate. The rotating main shaft 1 is connected to the rotating gear 2 through the coupling 8. The rotating gear 2 (meshing structure) drives the dual-shaft generator 3 to operate. The dual-shaft generator 3 (simple coil type) converts wind energy into electrical energy. The electrical energy is delivered to the LED light source in the LED light guide plate 7. The LED light source is lit up to provide a visual guidance light source, providing linear guidance at sharp curves on highways, in tunnels, or at night. Each component is secured by the first fixing bolt 4 and the second fixing bolt 9. The upper and lower sealing plates 16 of the air-leaking rotating cylinder 5 prevent foreign objects and rainwater from entering. It does not require external power supply, but is self-sufficient in energy by utilizing the airflow of the vehicle. It is not affected by natural wind and rain and can work continuously and stably.
[0022] The device has a simple structure and is easy to disassemble. It converts non-natural wind energy into usable energy for highways, improving energy utilization and conforming to the concept of green and low-carbon economy. Compared with the original guide lights for highways, it reduces maintenance costs and does not require a unified power supply. The electricity generated by this device is self-sufficient and is not affected by external wind and rain, which can bring high economic benefits.
[0023] With a simple principle and structure, low equipment maintenance costs, and reasonable utilization of non-natural wind resources during driving, it is green and environmentally friendly. The guiding light source can guide and warn oncoming vehicles, and has high practical value.
[0024] like Figure 1-2As shown, in this embodiment, the LED light-emitting guide plate 7 has multiple fixing holes at 120° intervals on both the upper and lower edges. A first fixing bolt 4 is installed in each fixing hole, and a connecting piece is fitted on the first fixing bolt 4. The connecting piece is attached to the outer wall of the air-leaking rotating cylinder 5. A first threaded hole 15 and a placement groove 14 are provided on the support plate 13. One end of the first fixing bolt 4 is threaded into the first threaded hole 15. One end of the support column 12 is located in the placement groove 14. A placement hole 10 is provided on the coupling 8. One end of the rotating main shaft 1 is located in the placement hole 10. A second fixing bolt 9 is provided on the coupling 8. One end of the second fixing bolt 9 is engaged with the outer wall of the rotating main shaft 1. Two arc-shaped plates 23 are placed on the outer wall of the air-leaking rotating cylinder 5. A connecting plate 18 is provided on the arc-shaped plate 23, and a fixing plate 17 is provided on the connecting plate 18.
[0025] like Figure 3-4 As shown, the fixed plate 17 of this embodiment has multiple guide holes 19. A positioning pin 20 is slidably fitted in the guide hole 19. A fixing plate 21 is provided at the end of the positioning pin 20 away from the fixed plate 17. A spring 22 is provided between the fixing plate 21 and the fixed plate 17. The spring 22 is located on the positioning pin 20. Two fixing blocks 24 are provided on the arc plate 23. A lead screw 25 is provided on the fixing block 24. A rotating cylinder 26 is threaded between two adjacent lead screws 25. Both ends of the rotating cylinder 26 are provided with second threaded holes 27. The threads of the two second threaded holes 27 are opposite. One end of the lead screw 25 is threaded in the second threaded hole 27. A rubber pad 28 is provided on the inner side wall of the arc plate 23. The rubber pad 28 is fitted with the outer side wall of the air-leaking rotating cylinder 5.
[0026] After the upper and lower air-leaking rotating cylinders 5 are installed, the fixing plate 17 is first placed around the protective pile. The rotating cylinder 26 is manually driven to rotate. Since the threads of the second threaded holes 27 at both ends of the rotating cylinder are opposite, the screw 25 that is engaged with its threads will move inward synchronously. If the rotating cylinder 26 rotates clockwise, the screws 25 at both ends will drive the fixing block 24 and the arc plate 23 to move closer to the center, so that the rubber pad 28 on the inner side of the arc plate 23 gradually adheres to the outer wall of the air-leaking rotating cylinder 5. After adjusting to the target position, the arc plate 23 drives the fixing plate 17 to move through the connecting plate 18. At this time, the two fixing plates 17 slide closer to each other. The fixing plate 17 drives the positioning pin 20 to slide towards the protective pile through the guide hole 19, and positions one end of the positioning pin 20 on the protective pile. The other end of the positioning pin 20 drives the fixing plate 21 to move and stretches the spring 22. Then the device can be placed on the top of each protective pile of the highway.
[0027] By cooperating with the rotating cylinder 26 and the lead screw 25, the two arc plates 23 on both sides can be driven to move synchronously and symmetrically, so that the inner rubber pad 28 is evenly attached to the outer wall of the air-leaking rotating cylinder 5, reducing the sealing failure or local wear caused by uneven load. At the same time, the elastic positioning structure of the positioning pin 20 and the spring 22 can adapt to the installation error of the protective pile, and realize quick disassembly and stable locking.
[0028] Example 1: Considering that the actual highway scenario differs from the ideal operating environment of the device, the practical application of this device may still have the following problems: 1. The traffic flow is unevenly distributed throughout the day. When the traffic flow is low, the airflow generated by the vehicles is insufficient to support the normal operation of the device. 2. The demand for induction light sources differs between daytime and nighttime. During the day, when lighting is better, the demand for induction light sources is not high, while at night, when lighting is poorer, the demand for induction light sources is greater.
[0029] To address the above issues, a photoresistor and capacitor were added to the device. During the daytime when traffic is heavy, the device emits light at a low brightness and stores electrical energy to supply power for use at night when traffic is light. This idea needs to be further improved based on the existing technology and its feasibility needs to be verified.
[0030] This utility model is not limited to the above-described embodiments. Anyone should know that structural changes made under the guidance of this utility model, and any technical solutions that are the same as or similar to this utility model, fall within the protection scope of this utility model. Technical aspects, shapes, and structures not described in detail in this utility model are all publicly known technologies.
Claims
1. A device for inducing light source generation based on non-natural wind energy, characterized in that, include: Two air-leaking rotating cylinders (5) are provided with an LED light-emitting guide plate (7) between them. A dual-shaft generator (3) is provided inside the LED light-emitting guide plate (7). A rotating gear (2) and two couplings (8) are provided on the dual-shaft generator (3). Multiple fixing components are provided on the couplings (8). A rotating main shaft (1) is snapped onto the couplings (8). A double S-paddle propeller (6) is provided on the rotating main shaft (1). Sealing plates (16) are provided at the upper end and the lower end of the air-leaking rotating cylinders (5). The fixing assembly includes a support column (12) fixed to the outer wall of the coupling (8), a support plate (13) is placed at one end of the support column (12), and the outer wall of the support plate (13) is snapped onto the inner wall of the air-leaking rotating cylinder (5).
2. The induction light source device for non-natural wind power generation according to claim 1, characterized in that, The LED light-emitting guide plate (7) has multiple fixing holes on its upper and lower edges. A first fixing bolt (4) is installed in the fixing hole. A connecting piece is fitted on the first fixing bolt (4). The connecting piece is attached to the outer wall of the air-leaking rotating cylinder (5).
3. The induction light source device for non-natural wind power generation according to claim 2, characterized in that, The support plate (13) has a first threaded hole (15) and a placement groove (14). One end of the first fixing bolt (4) is threaded into the first threaded hole (15), and one end of the support column (12) is located in the placement groove (14).
4. The induction light source device for non-natural wind power generation according to claim 1, characterized in that, The coupling (8) has a placement hole (10), one end of the rotating spindle (1) is located in the placement hole (10), and the coupling (8) is provided with a second fixing bolt (9), one end of the second fixing bolt (9) is engaged with the outer wall of the rotating spindle (1).
5. The induction light source device for non-natural wind power generation according to claim 1, characterized in that, Two arc-shaped plates (23) are placed on the outer wall of the air-leaking rotating cylinder (5). A connecting plate (18) is provided on the arc-shaped plate (23), and a fixing plate (17) is provided on the connecting plate (18).
6. The induction light source device for non-natural wind power generation according to claim 5, characterized in that, The fixed plate (17) has multiple guide holes (19), and a positioning pin (20) is slidably fitted inside the guide hole (19). A fixing plate (21) is provided at the end of the positioning pin (20) away from the fixed plate (17). A spring (22) is provided between the fixing plate (21) and the fixed plate (17). The spring (22) is located on the positioning pin (20).
7. The induction light source device for non-natural wind power generation according to claim 5, characterized in that, Two fixed blocks (24) are provided on the arc plate (23). A lead screw (25) is provided on the fixed block (24). A rotating cylinder (26) is threaded between two adjacent lead screws (25). A second threaded hole (27) is provided at both ends of the rotating cylinder (26). The two second threaded holes (27) have opposite thread directions. One end of the lead screw (25) is threaded in the second threaded hole (27).
8. A non-natural wind power generation induced light source device according to claim 5, characterized in that, The inner wall of the arc plate (23) is provided with a rubber pad (28), which is in conjunction with the outer wall of the air-leaking rotating cylinder (5).