A multi-functional micro wind power generation device
By designing multi-functional micro wind power generation equipment, using wind-driven cleaning rings to clean up floating garbage in the lake, the problem of floating garbage affecting biological growth and low manual cleaning efficiency in the lake is solved, and the dual benefits of continuous cleaning and wind power generation are achieved.
Patent Information
- Application Number
- CN202411893057.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2044-12-20
AI Technical Summary
Floating garbage in scenic lakes affects the growth of biological organisms in the lake, and the artificial salvage efficiency is low, which poses safety hazards.
Design a multifunctional micro wind power plant equipped with blades, cleaning rings and drive components. The cleaning rings are repeatedly lifted and lowered through the wind power system to attract and clean up floating garbage on the lake surface.
Continuous cleaning of floating garbage in lakes has been achieved, the lake's ecological balance has been maintained, the labor workload has been reduced, the landscape quality has been improved, and the dependence on traditional electricity has been reduced through wind power generation.
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Figure CN119435301B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of wind power generation, and particularly to a multifunctional micro wind power generation device. Background Art
[0002] Wind power generation is a clean and renewable energy source. In some scenic area lakes, wind power generation devices are usually added. The electric energy stored through wind power generation is used to supply night lighting for public areas such as roads and footpaths in the scenic area, or to provide power for traffic facilities such as traffic signs and traffic lights in the scenic area, thereby greatly reducing the operating costs of the scenic area.
[0003] However, with the increase in the number of tourists in the scenic area, some tourists may casually discard garbage such as plastic bags during play, resulting in floating garbage on the surface of the lake. This not only affects the beauty of the scenic area, but also the existence of the floating garbage will affect the growth of organisms in the lake. Cleaning these floating garbage usually requires manual fishing, which is not only unsafe but also inefficient. Summary of the Invention
[0004] In order to overcome the influence of the floating garbage existing in the scenic area lake on the growth of organisms in the lake, and the fact that cleaning these floating garbage usually requires manual fishing, which is not only unsafe but also inefficient, the present invention provides a multifunctional micro wind power generation device.
[0005] The technical implementation solution of the present invention is: a multifunctional micro wind power generation device, including a fixed pile, a mounting seat and a wind power generation system; the fixed pile is provided with the mounting seat; the mounting seat is provided with the wind power generation system; it further includes blades, a mounting ring, a filter screen, a cleaning ring and a driving component; several blades for attracting floating garbage are connected to the wind power generation system; the mounting ring is fixedly connected to the mounting seat through several fixed round rods; a filter screen for intercepting floating garbage is arranged between the mounting seat and the mounting ring, and an open chamber for containing floating garbage is formed among the mounting seat, the mounting ring and the filter screen; the cleaning ring is slidably connected to the mounting ring, and the cleaning ring is attached to the outer side of the mounting ring; the driving component is installed on the mounting seat, and the cleaning ring is connected to the driving component, and the cleaning ring is driven by the driving component to move up and down on the mounting ring.
[0006] In addition, particularly preferably, the driving component includes a fixed cover, a driving member, a connecting plate and a support rod; several fixed covers are fixedly connected to the mounting seat; a driving member is fixedly connected in each fixed cover; the connecting plate is slidably connected to the fixed pile, a sealing ring is arranged at the contact position between the connecting plate and the fixed pile, and the connecting plate is fixedly connected to the telescopic ends of all the driving members; the driving member is used to drive the connecting plate to move up and down; several support rods are fixedly connected to the connecting plate, and the upper side of each support rod is fixedly connected to the cleaning ring.
[0007] In addition, it is particularly preferred that an intercepting net for preventing floating garbage from floating outward is provided on the cleaning ring.
[0008] In addition, it is particularly preferred that a protective shell, a second gear, a third gear and a servo motor are further included; the mounting seat is fixedly connected with the protective shell, and the protective shell is connected with the wind power generation system; a second gear is provided on the wind power generation system; the mounting seat is fixedly connected with the servo motor; the output end of the servo motor is rotationally connected with a paddle through a torsion spring; a third gear is rotationally connected to the servo motor; a plurality of helical teeth are provided on the inner ring surface of the third gear, and the paddle meshes with the helical teeth; the second gear meshes with the third gear, and both the second gear and the third gear are located inside the protective shell.
[0009] In addition, it is particularly preferred that a protective cover is further included; a protective cover for preventing the equipment from being eroded is fixedly connected between the lower side of the mounting seat and the connecting plate, and the protective cover is a telescopic and foldable corrugated pipe.
[0010] In addition, it is particularly preferred that a first one-way valve and a second one-way valve are further included; a gas storage cavity is formed among the lower side of the mounting seat, the protective cover and the connecting plate; a plurality of communication grooves are provided on the mounting seat, and each communication groove communicates with the gas storage cavity; a first one-way valve is fixedly connected in each communication groove, and each first one-way valve opens towards the gas storage cavity side; the fixed pile is of a hollow structure; a plurality of air inlets are provided on the fixed pile, and each air inlet communicates with the gas storage cavity; a plurality of air outlets are provided on the fixed pile, and each air outlet is located below the connecting plate; a second one-way valve is fixedly connected to each air outlet of the fixed pile, and each second one-way valve opens towards the outside of the fixed pile.
[0011] In addition, it is particularly preferred that the protective cover is made of a waterproof and corrosion-resistant material.
[0012] In addition, it is particularly preferred that a water bag, a telescopic pipe and a flushing block are further included; a water bag for sucking water flow is connected to the fixed pile, and the upper side of the water bag is fixedly connected to the connecting plate; a telescopic pipe is communicated between the fixed pile and the water bag, the connection part of the telescopic pipe and the fixed pile is located below the second one-way valve, and a first one-way membrane is provided at the connection part of the telescopic pipe and the fixed pile, and the first one-way membrane opens towards the water bag side; the flushing block is fixedly connected to the fixed pile, and the flushing block is fixedly connected to the water bag; a plurality of flow holes for flushing the air outlets of the fixed pile are provided on the flushing block, and each flow hole communicates with the water bag; a second one-way membrane is provided in each flow hole, and the second one-way membrane opens towards the fixed pile side.
[0013] In addition, it is particularly preferred that the flushing block is provided with a curved arc surface.
[0014] In addition, it is particularly preferred that it further includes a connecting pipe and a check valve III; each support rod is arranged as a hollow structure, and each support rod penetrates through the cleaning ring; the connection part between the support rod and the cleaning ring is close to the lower edge of the interception net; a plurality of connecting pipes are communicated with the water bag, and each connecting pipe is communicated with the adjacent support rod; a check valve III is arranged in each support rod, and the check valve III opens towards the side of the connecting pipe.
[0015] Beneficial effects: The present invention realizes the continuous cleaning of floating garbage in the lake by driving the cleaning ring to rise and fall repeatedly, prevents the release of harmful substances after the garbage decomposes, maintains the ecological balance of the lake, and there is no need for manual fishing of floating garbage in the lake, reducing the manual workload. At the same time, it improves the overall landscape quality of the park. It should be noted that during the use of this equipment, it operates by using the electric energy stored by wind power generation, reducing the park's dependence on traditional electricity and saving operating costs;
[0016] The output end of the driving member is shielded by the protective cover, thereby preventing the output end of the driving member from directly contacting the lake water and ensuring the stable operation of the driving member;
[0017] The connecting plate squeezes the protective cover, so that the gas inside the air storage cavity formed between the connecting plate, the protective cover and the lower surface of the mounting seat is ejected into the lake through the check valve II, thereby increasing the oxygen content in the lake, accelerating the decomposition of organic matter, reducing the reproduction of algae, and improving the water quality;
[0018] The connecting plate drives the water bag to stretch, generating a suction force inside the cleaning ring. The water flow converges towards the cleaning ring under the action of the suction force, and drives the floating garbage to approach the inside of the cleaning ring, reducing the pushing effect on the floating garbage during the rising process of the cleaning ring and further improving the cleaning effect of the cleaning ring. Description of the Drawings
[0019] Figure 1 It is a three-dimensional structure schematic diagram of the multifunctional micro wind power generation equipment of the present invention;
[0020] Figure 2 It is a three-dimensional structure schematic diagram of the combination of the check valve II, the water bag and the connecting pipe of the present invention;
[0021] Figure 3 It is a three-dimensional structure schematic diagram of the combination of the mounting seat, the blade and the cleaning ring of the present invention;
[0022] Figure 4 It is a cross-sectional view of the combination of the mounting seat, the mounting ring, the connecting plate and the protective cover of the present invention;
[0023] Figure 5 It is a three-dimensional structure schematic diagram of the combination of the gear II and the gear III of the present invention;
[0024] Figure 6Schematic three-dimensional structure diagram of the internal gear ring and gear one combination of the present invention;
[0025] Figure 7 Cross-sectional view of the water bag of the present invention;
[0026] Figure 8 Cross-sectional view of the flushing block of the present invention;
[0027] Figure 9 Schematic three-dimensional structure diagram of the combination of gear two, gear three, helical gear, servo motor and paddle of the present invention;
[0028] Figure 10 Schematic three-dimensional structure diagram of the combination of the support rod, connecting pipe and one-way valve of the present invention, wherein the support rod is in a sectional view.
[0029] In the figure: 1 - fixed pile, 1001 - air inlet, 2 - mounting seat, 2001 - communication groove, 3 - blade, 4 - mounting ring, 5 - filter screen, 6 - cleaning ring, 6001 - intercepting net, 101 - rotating shaft, 10101 - fan blade, 102 - internal gear ring, 103 - gear one, 104 - connecting rod, 105 - generator, 201 - fixed cover, 202 - driving part, 203 - connecting plate, 204 - support rod, 301 - protective shell, 302 - gear two, 303 - gear three, 30301 - helical gear, 304 - servo motor, 30401 - paddle, 401 - protective cover, 402 - one-way valve one, 403 - one-way valve two, 501 - water bag, 502 - telescopic pipe, 503 - flushing block, 50301 - through hole, 50302 - curved arc surface, 504 - connecting pipe, 505 - one-way valve three. Detailed implementation manners
[0030] To make the purpose, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below in combination with the detailed implementation manners and with reference to the accompanying drawings. It should be understood that these descriptions are exemplary and are not intended to limit the scope of the present invention. In addition, in the following description, the descriptions of well-known structures and technologies are omitted to avoid unnecessarily confusing the concepts of the present invention.
[0031] Embodiment 1
[0032] A multifunctional micro wind power generation device, as Figures 1-9 shown, includes a fixed pile 1, a mounting seat 2 and a wind power generation system; the mounting seat 2 is installed on the fixed pile 1; the wind power generation system is installed on the mounting seat 2;
[0033] It further includes blades 3, an installation ring 4, a filter screen 5, a cleaning ring 6 and a driving component; two symmetrically arranged blades 3 are connected to the wind power generation system; the installation ring 4 is fixedly connected to the installation base 2 through a plurality of fixed round rods; a filter screen 5 is arranged between the installation base 2 and the installation ring 4, and an open chamber is formed among the installation base 2, the installation ring 4 and the filter screen 5; the cleaning ring 6 is slidably connected to the installation ring 4, and the side of the cleaning ring 6 close to the installation ring 4 is in contact with the outer side of the installation ring 4; a driving component is installed on the installation base 2, and the cleaning ring 6 is connected to the driving component, and the driving component drives the cleaning ring 6 to move up and down on the outer side of the installation ring 4.
[0034] The wind power generation system includes a rotating shaft 101, an internal gear ring 102, a first gear 103, a connecting rod 104 and a generator 105; the installation base 2 is rotatably connected to the rotating shaft 101; both of the two blades 3 are fixedly connected to the lower side of the rotating shaft 101; six annularly distributed fan blades 10101 are arranged on the upper part of the rotating shaft 101; the rotating shaft 101 is arranged as a hollow structure; the internal gear ring 102 is fixedly connected inside the rotating shaft 101; the first gear 103 is rotatably connected to the internal gear ring 102; the connecting rod 104 is fixedly connected to the first gear 103; the generator 105 is fixedly connected inside the installation base 2, and the connecting rod 104 is fixedly connected to the output shaft of the generator 105.
[0035] The driving component includes a fixed cover 201, a driving member 202, a connecting plate 203 and a support rod 204; two fixed covers 201 are fixedly connected to the installation base 2; a driving member 202 is fixedly connected inside each fixed cover 201, and the driving member 202 is an electric push rod; the connecting plate 203 is slidably connected to the fixed pile 1, a sealing ring is arranged at the contact position between the connecting plate 203 and the fixed pile 1, and the connecting plate 203 is fixedly connected to the telescopic ends of all the driving members 202; the driving member 202 is used to drive the connecting plate 203 to move up and down; six support rods 204 are fixedly connected to the connecting plate 203, and the upper side of each support rod 204 is fixedly connected to the cleaning ring 6.
[0036] An intercepting net 6001 is arranged on the cleaning ring 6.
[0037] It further includes a protective shell 301, a second gear 302, a third gear 303 and a servo motor 304; the mounting base 2 is fixedly connected with the protective shell 301, and the protective shell 301 is rotatably connected with the rotating shaft 101; the second gear 302 is fixedly connected to the rotating shaft 101; the servo motor 304 is fixedly connected to the mounting base 2; the output end of the servo motor 304 is rotatably connected with a dial 30401 through a torsion spring; the third gear 303 is rotatably connected to the servo motor 304; a plurality of helical teeth 30301 are arranged on the inner ring surface of the third gear 303, and the dial 30401 meshes with the helical teeth 30301; the second gear 302 meshes with the third gear 303, and both the second gear 302 and the third gear 303 are located inside the protective shell 301. It further includes a protective cover 401; a protective cover 401 is fixedly connected between the lower side of the mounting base 2 and the connecting plate 203, and the protective cover 401 is set as a telescopic and foldable corrugated pipe.
[0038] It further includes a first one-way valve 402 and a second one-way valve 403; a gas storage cavity is formed among the lower side of the mounting base 2, the protective cover 401 and the connecting plate 203; three communication grooves 2001 are arranged on the mounting base 2, and each communication groove 2001 communicates with the gas storage cavity; a first one-way valve 402 is fixedly connected in each communication groove 2001, and each first one-way valve 402 opens towards the gas storage cavity side; the fixed pile 1 is set as a hollow structure; three air inlets 1001 are arranged at the part of the fixed pile 1 inside the protective cover 401, and each air inlet 1001 communicates with the gas storage cavity; three air outlets are arranged on the fixed pile 1, and each air outlet is located below the connecting plate 203; a second one-way valve 403 is fixedly connected to each air outlet of the fixed pile 1, and each second one-way valve 403 opens towards the outside of the fixed pile 1.
[0039] The protective cover 401 is made of a waterproof and corrosion-resistant material.
[0040] It further includes a water bag 501, a telescopic tube 502 and a flushing block 503; the water bag 501 is connected to the fixed pile 1, and the upper side of the water bag 501 is fixedly connected to the connecting plate 203; a telescopic tube 502 is communicated between the fixed pile 1 and the water bag 501, the connection part of the telescopic tube 502 and the fixed pile 1 is located below the second one-way valve 403, and a one-way membrane one is arranged at the connection part of the telescopic tube 502 and the fixed pile 1, and the one-way membrane one opens towards the water bag 501 side; the flushing block 503 is fixedly connected to the fixed pile 1, and the flushing block 503 is fixedly connected to the water bag 501; a plurality of flow holes 50301 are arranged on the flushing block 503, and each flow hole 50301 communicates with the water bag 501; a one-way membrane two is arranged in each flow hole 50301, and the one-way membrane two opens towards the fixed pile 1 side.
[0041] The flushing block 503 is provided with a curved arc surface 50302 to guide the water flow ejected from the flow holes 50301, so that the water flow scours downward along the outer wall of the fixed pile 1, improving the cleaning effect of the flushing block 503.
[0042] The working steps of this embodiment are as follows:
[0043] Manually install the fixed pile 1, the mounting base 2 and the wind power generation system in the lake, and adjust the installation quantity of this equipment according to the size of the lake. There should be a certain distance between adjacent equipment. It should be noted that in the initial state, the filter screen 5 is above the lake surface, the lower end of the blade 3 contacts the lake surface, and the cleaning ring 6 is below the lake surface.
[0044] Taking the top-down view as the reference, the fan blades 10101 of the rotating shaft 101 start to rotate counterclockwise under the influence of wind, and drive the internal gear ring 102 on the rotating shaft 101 to rotate together. The first gear 103 generates a differential rotation under the rotation of the internal gear ring 102, and drives the connecting rod 104 connected to the generator 105 to rotate together. The generator 105 converts mechanical energy into electrical energy, thus realizing wind power generation. During the rotation of the rotating shaft 101, the rotating shaft 101 will drive the blade 3 below it to rotate together. The blade 3 slides on the lake surface around the mounting base 2, thereby driving the lake water outside the mounting base 2 to flow in a vortex shape. At this time, the floating garbage around the mounting base 2 will move towards the mounting base 2 along with the flowing water and finally gather outside the mounting ring 4. The cleaning ring 6 is below the floating garbage. At this time, control the driving member 202 to drive the connecting plate 203, the support rod 204 and the cleaning ring 6 to move upward together. The water between the cleaning ring 6 and the mounting ring 4 will be lifted upward from the lake together. As the cleaning ring 6 gradually extends out of the lake surface, the floating garbage above the cleaning ring 6 will be caught by the cleaning ring 6 and move upward to the upper side of the mounting ring 4 together with the lake water between the cleaning ring 6 and the mounting ring 4. After the liquid level of the lake water between the cleaning ring 6 and the mounting ring 4 is flush with the upper side of the mounting ring 4, as the cleaning ring 6 continues to move upward, the lake water between the cleaning ring 6 and the mounting ring 4 will cross the upper side of the mounting ring 4 and drive the floating garbage to fall into the chamber formed between the mounting base 2, the mounting ring 4 and the filter screen 5 together. The lake water will pass through the filter screen 5 and fall back into the lake, while the floating garbage is intercepted by the filter screen 5 until the cleaning ring 6 no longer fits the outside of the mounting ring 4. At this time, the lake water and the floating garbage contained between the mounting ring 4 and the cleaning ring 6 will all be collected in the chamber formed between the mounting base 2, the mounting ring 4 and the filter screen 5. Then control the driving member 202 to drive the connecting plate 203, the support rod 204 and the cleaning ring 6 back to the initial position. Subsequently, only need to manually collect the garbage collected on the filter screen 5 regularly. By repeating the above operations, that is, the blade 3 keeps rotating and the cleaning ring 6 moves up and down repeatedly, so as to continuously clean the floating garbage in the lake, prevent the release of harmful substances after the garbage decomposes, maintain the ecological balance of the lake, and there is no need for manual salvage of floating garbage in the lake, reducing the manual workload, and at the same time improving the overall landscape quality of the park. It should be noted that during the use of this equipment, it operates by using the electric energy stored by wind power generation, reducing the park's dependence on traditional electricity and saving operating costs.
[0045]
[0045] When the driving member 202 drives the connecting plate 203, the support rod 204 and the cleaning ring 6 to extend from the lake to the lake surface, the cleaning ring 6 will hold the lake water between it and the outer side of the mounting ring 4 and move upward together. The surface tension of the lake surface will be broken by the cleaning ring 6, resulting in an outward thrust on the floating garbage and dispersing it in all directions, thus reducing the cleaning efficiency of the cleaning ring 6. To solve the above situation, when the cleaning ring 6 moves upward, the interception net 6001 will first extend out of the lake surface. The interception net 6001 is a porous structure, and the lake water is not greatly affected by it during the rising process. Therefore, only when the solid part of the cleaning ring 6 moves upward, the floating garbage will be subjected to an outward thrust and disperse in all directions. At this time, the floating garbage is blocked and intercepted by the interception net 6001 to prevent the floating garbage from dispersing in all directions and improve the cleaning efficiency of the cleaning ring 6.
[0046]
[0046] Meanwhile, it should be noted that when the natural wind power weakens and cannot drive the fan blade 10101 to rotate smoothly, in order to keep the lake beautiful and clean, the servo motor 304 and the driving member 202 can be started regularly by the electric energy stored by wind power generation. Taking the top-down view as a reference, the servo motor 304 drives the paddle 30401 to rotate clockwise, and the inclined tooth 30301 on the inner ring surface of the third gear 303 is driven by the paddle 30401 to rotate clockwise together, so as to drive the second gear 302, the rotating shaft 101 and the blade 3 to rotate, thereby providing continuous power supply for the blade 3 and the cleaning ring 6 and ensuring the cleaning of the lake by the cleaning ring 6.
[0047]
[0047] It should be noted that taking the top-down view as a reference, when the natural wind power is strong and drives the rotating shaft 101, the second gear 302 and the blade 3 to rotate counterclockwise, the third gear 303 will rotate clockwise. At this time, the inclined tooth 30301 on the inner ring surface of the third gear 303 will squeeze the paddle 30401. Since the paddle 30401 is rotationally connected to the servo motor 304 through a torsion spring, the paddle 30401 will deflect after being squeezed, so that the inclined tooth 30301 on the inner ring surface of the third gear 303 cannot drive the output end of the servo motor 304 to rotate together, thus ensuring the smooth progress of the above process.
[0048]
[0048] It should be noted that taking the top-down view as a reference, the paddle 30401 is set on the output end of the servo motor 304 through a limiting structure to only rotate clockwise and cannot rotate counterclockwise. The limiting structure is a prior art and will not be elaborated here.
[0049] The output end of the driving member 202 is prone to corrosion when immersed in the lake for a long time, which shortens the service life of the equipment. To solve the above situation, the output end of the driving member 202 is shielded by the protective cover 401, so as to prevent the output end of the driving member 202 from directly contacting the lake water and ensure the stable operation of the driving member 202. It should be noted that the protective cover 401 is set as a telescopic and foldable bellows, so when the driving member 202 drives the connecting plate 203 to move upward, the protective cover 401 will not block the connecting plate 203.
[0050] To maintain the health of the aquatic ecosystem, promote the decomposition of organic matter, and improve water quality, an aerator is usually added to the scenic lake to fully dissolve oxygen in the water. However, due to the large area of the lake, a large number of aerators need to be added, and long-term operation will increase energy consumption and operating costs. To solve the above problems, an air storage cavity is formed between the connecting plate 203, the protective cover 401 and the lower surface of the mounting seat 2. When the driving member 202 drives the connecting plate 203 to move upward, the protective cover 401 is compressed, and the volume of the air storage cavity formed between the connecting plate 203, the protective cover 401 and the lower surface of the mounting seat 2 gradually decreases. The gas inside the air storage cavity enters the fixed pile 1 through the air inlet 1001 on the fixed pile 1, and finally is sprayed into the lake through the check valve II 403, so as to increase the oxygen content in the lake, accelerate the decomposition of organic matter, reduce the reproduction of algae, and improve water quality.
[0051] When the driving member 202 drives the connecting plate 203 to return to the initial position, the protective cover 401 gradually returns to its original state, and the volume of the air storage cavity gradually increases until it returns to the initial state. At this time, the outside air will enter the communication groove 2001 of the mounting seat 2 through the check valve I 402, and finally be sucked into the air storage cavity, so as to provide a continuous gas supply for the air storage cavity. It should be noted that the above process is an uninterrupted process, so the protective cover 401 will provide continuous oxygen supply for the lake.
[0052] It should be noted that when the gas in the protective cover 401 is sprayed into the lake through the check valve II 403, part of the water flow in the lake will flow into the fixed pile 1 through the check valve II 403 due to the water pressure in the lake. Over time, the water flow in the fixed pile 1 will accumulate more and more, blocking the check valve II 403 and affecting the normal exhaust of the check valve II 403. To avoid the above situation, when the driving member 202 drives the connecting plate 203 to move upward together, the connecting plate 203 will drive the upper side of the water bag 501 to move upward together, increasing the volume of the water bag 501, so that the suction pipe 502 connected to the water bag 501 generates a suction force, the check valve I in the suction pipe 502 opens, and the water accumulated in the fixed pile 1 is gradually sucked into the water bag 501, so that the water accumulated in the fixed pile 1 is located below the check valve II 403, ensuring the normal exhaust of the check valve II 403 and avoiding affecting the oxygenation function of the present invention.
[0053] When the driving member 202 drives the connecting plate 203 to move downward together and return to the initial position, the water bag 501 is gradually compressed and its internal volume decreases. At this time, the one-way film one in the telescopic tube 502 closes, and the water flow inside the water bag 501 flushes the one-way valve two 403 under the fixing pile 1 through the circulation hole 50301 on the flushing block 503, thereby preventing organisms or other impurities in the lake from adhering to the one-way valve two 403 and causing blockage to the one-way valve two 403, affecting the normal use of the one-way valve two 403. At the same time, the arc-shaped surface 50302 guides the ejected water flow, so that the water flow flushes downward along the outer side wall of the fixing pile 1, improving the cleaning effect of the flushing block 503.
[0054] Embodiment 2
[0055] Based on Embodiment 1, as Figure 10 shown, it further includes a connecting pipe 504 and a one-way valve three 505; each support rod 204 is provided with a hollow structure, and each support rod 204 penetrates through the cleaning ring 6; the connection part between the support rod 204 and the cleaning ring 6 is close to the lower edge of the interception net 6001; six connecting pipes 504 are communicated with the water bag 501, and each connecting pipe 504 is communicated with the adjacent support rod 204; a one-way valve three 505 is arranged in each support rod 204, and the one-way valve three 505 opens toward the side of the connecting pipe 504.
[0056] The working principle of this embodiment is:
[0057] When the driving member 202 drives the connecting plate 203 to move upward together, the connecting plate 203 will drive the upper side of the water bag 501 to move upward together. During the process of gradually increasing the volume of the water bag 501, the connecting pipe 504 communicated with the water bag 501 also generates a suction force at this time, and then a suction force is generated at the connection part between the support rod 204 and the cleaning ring 6. At the same time, since the connection part between the support rod 204 and the cleaning ring 6 is close to the lower edge of the interception net 6001, when the cleaning ring 6 holds the lake water and rises from the lake to the lake surface, the water flow will be affected by the suction force and converge into the cleaning ring 6, and drive the floating garbage to approach the inner side of the cleaning ring 6, reducing the pushing effect on the floating garbage during the rising process of the cleaning ring 6 and further improving the cleaning effect of the cleaning ring 6. When the connection part between the cleaning ring 6 and the support rod 204 is above the lake surface, the support rod 204 sucks the lake water between the installation ring 4 and the cleaning ring 6. After the lake water level between the installation ring 4 and the cleaning ring 6 is lower than the connection part between the cleaning ring 6 and the support rod 204, the outside air will be sucked into the inside of the water bag 501 through the support rod 204.
[0058] When the driving member 202 drives the connecting plate 203 to move downward together to return to the initial position, the water sac 501 is gradually compressed, and its internal volume decreases. The one-way valve III 505 and the one-way membrane in the telescopic tube 502 block the water flow inside the water sac 501. At this time, repeat the steps in Embodiment 1, so that the water flow inside the water sac 501 can only scour the one-way valve II 403 below the fixing pile 1 through the circulation holes 50301 on the flushing block 503, preventing organisms or other impurities in the lake from adhering to the one-way valve II 403 and causing blockage to the one-way valve II 403, affecting the normal use of the one-way valve II 403.
[0059] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit the protection scope of the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the essence and scope of the technical solutions of the present invention.
Claims
1. A multifunctional micro wind power generation device, comprising a fixed pile (1), a mounting seat (2) and a wind power generation system; the fixed pile (1) is mounted with the mounting seat (2); the mounting seat (2) is mounted with the wind power generation system; the characteristics are: It also comprises blades (3), a mounting ring (4), a filter screen (5), a cleaning ring (6) and a driving assembly; a plurality of blades (3) for attracting floating garbage are connected to the wind power generation system; a mounting ring (4) is fixedly connected to the mounting seat (2) via a plurality of fixed round rods; a filter screen (5) for intercepting floating garbage is provided between the mounting seat (2) and the mounting ring (4), and an open chamber for containing floating garbage is formed between the mounting seat (2), the mounting ring (4) and the filter screen (5); a cleaning ring (6) is slidably connected to the mounting ring (4), and the cleaning ring (6) is in contact with the outer side of the mounting ring (4); a driving assembly is installed on the mounting seat (2), and the cleaning ring (6) is connected to the driving assembly, and the cleaning ring (6) is driven by the driving assembly to move up and down on the mounting ring (4); The driving assembly comprises a fixed cover (201), a driving member (202), a connecting plate (203) and a supporting rod (204); a plurality of fixed covers (201) are fixedly connected to the mounting seat (2); a driving member (202) is fixedly connected inside each fixed cover (201); a connecting plate (203) is slidably connected to the fixed pile (1), a sealing ring is provided at a contact position between the connecting plate (203) and the fixed pile (1), and the connecting plate (203) is fixedly connected to the telescopic ends of all the driving members (202); the driving member (202) is used to drive the connecting plate (203) to move up and down; a plurality of supporting rods (204) are fixedly connected to the connecting plate (203), and the upper side of each supporting rod (204) is fixedly connected to the cleaning ring (6); It also includes a protective cover (401); a protective cover (401) for preventing the equipment from being corroded is fixedly connected between the lower side of the mounting seat (2) and the connecting plate (203), and the protective cover (401) is configured as a retractable and foldable bellows; The device further comprises a one-way valve (402) and a one-way valve (403); a gas storage chamber is formed between the lower side of the mounting seat (2), the protective cover (401) and the connecting plate (203); a plurality of connecting grooves (2001) are provided on the mounting seat (2), and each connecting groove (2001) is connected to the gas storage chamber; each connecting groove (2001) is fixedly connected with a one-way valve (402), and each one-way valve (402) is directed toward the one-way valve of the gas storage chamber. The fixed pile (1) is open on one side; the fixed pile (1) is configured as a hollow structure; a plurality of air inlets (1001) are provided on the fixed pile (1), and each air inlet (1001) is communicated with the air storage chamber; a plurality of air outlets are provided on the fixed pile (1), and each air outlet is located below the connecting plate (203); a second one-way valve (403) is fixedly connected to each air outlet of the fixed pile (1), and each second one-way valve (403) opens toward the outside of the fixed pile (1); The water bag (501) is connected to the fixed pile (1) and is used for pumping water, and the upper side of the water bag (501) is fixedly connected to the connecting plate (203); the fixed pile (1) and the water bag (501) are connected by a telescopic tube (502); the connecting point between the telescopic tube (502) and the fixed pile (1) is located below the second one-way valve (403); and the connecting point between the telescopic tube (502) and the fixed pile (1) is provided with a one-way valve (403). The one-way membrane (501) is opened toward one side of the water bag (501); a flushing block (503) is fixedly connected to the fixed pile (1), and the flushing block (503) is fixedly connected to the water bag (501); a plurality of flow holes (50301) for flushing the air outlet of the fixed pile (1) are arranged on the flushing block (503), and each flow hole (50301) is connected to the water bag (501); a one-way membrane (50301) is arranged in each flow hole (50301), and the one-way membrane (50301) is opened toward one side of the fixed pile (1).
2. A multifunctional micro wind power generation device according to claim 1, characterized in that: An interception net (6001) is provided on the cleaning ring (6) to prevent floating garbage from floating outward.
3. A multifunctional micro wind power generation device according to claim 1, characterized in that: The invention also comprises a protective shell (301), a second gear (302), a third gear (303) and a servo motor (304); the mounting seat (2) is fixedly connected with the protective shell (301), and the protective shell (301) is connected to a wind power generation system; the wind power generation system is provided with a second gear (302); the mounting seat (2) is fixedly connected with a servo motor (304); the output end of the servo motor (304) is rotatably connected with a paddle (30401) via a torsion spring; the servo motor (304) is rotatably connected with a third gear (303); the inner ring surface of the third gear (303) is provided with a plurality of helical teeth (30301), and the paddle (30401) meshes with the helical teeth (30301); the second gear (302) and the third gear (303) mesh with each other, and the second gear (302) and the third gear (303) are both located in the protective shell (301).
4. A multifunctional micro wind power generation device according to claim 1, characterized in that: The protective cover (401) is made of waterproof and corrosion-resistant material.
5. A multifunctional micro wind power generation device according to claim 1, characterized in that: A curved surface (50302) is provided on the flushing block (503).
6. A multifunctional micro wind power generation device according to claim 5, characterized in that: It also includes a connecting pipe (504) and a three-way valve (505); each support rod (204) is configured as a hollow structure, and each support rod (204) passes through the cleaning ring (6); the connection portion between the support rod (204) and the cleaning ring (6) is close to the lower edge of the interception net (6001); a plurality of connecting pipes (504) are connected to the water bag (501), and each connecting pipe (504) is connected to an adjacent support rod (204); a three-way valve (505) is provided in each support rod (204), and the three-way valve (505) opens toward one side of the connecting pipe (504).
Citation Information
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