CN218375619U - Automatic tracking high-efficiency photovoltaic power generation support parking lot - Google Patents
Automatic tracking high-efficiency photovoltaic power generation support parking lot Download PDFInfo
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- CN218375619U CN218375619U CN202222221722.2U CN202222221722U CN218375619U CN 218375619 U CN218375619 U CN 218375619U CN 202222221722 U CN202222221722 U CN 202222221722U CN 218375619 U CN218375619 U CN 218375619U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
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Abstract
The utility model discloses an automatic trail high-efficient photovoltaic power generation support parking area, including the place parking stall, be provided with a plurality of photovoltaic power generation supports that become the matrix and distribute on the place parking stall, photovoltaic power generation support includes the parking stall support, photovoltaic supporting component, the photovoltaic module that the south-north orientation set up with twist reverse power component, the high south low slope in photovoltaic supporting component north is fixed in the upper end of parking stall support, photovoltaic module fixes on photovoltaic supporting component, photovoltaic supporting component includes the photovoltaic support of the fixed subassembly of rectangle frame rack-type construction's level and vertical setting, it is fixed with photovoltaic module to be the matrix on the fixed subassembly of level, twist reverse power component and be connected with photovoltaic module and make photovoltaic module do reciprocating rotation about the horizontal direction. Photovoltaic power generation is used in the parking lot, solar energy is reasonably utilized for power generation, and the purposes of energy conservation and emission reduction are achieved.
Description
Technical Field
The utility model relates to a photovoltaic power generation's technical field, especially an automatic trail high-efficient photovoltaic power generation support parking area.
Background
Solar energy is inexhaustible renewable energy, and photovoltaic power generation utilizes the energy, so that the photovoltaic power generation system is well complementary with hydraulic power generation and thermal power generation, but the photovoltaic module of the existing photovoltaic power generation system needs to track sunlight, so a driving device with a very complex structure is needed, the existing photovoltaic power generation system has the defects of complex structure and high manufacturing cost, the ground parking lot generally occupies a large area, the illumination time is very long, but the solar energy is not reasonably utilized for power generation, and the resource waste is caused.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a simple structure, reasonable in design overcomes the simple to operate, energy saving and emission reduction's high-efficient photovoltaic power generation support parking area of automatic tracking that prior art is not enough.
In order to achieve the above purpose, the technical means adopted by the utility model are as follows:
the utility model provides an automatic trail high-efficient photovoltaic power generation support parking area, includes the place parking stall, and the key lies in: the photovoltaic power generation support comprises a parking space support, a photovoltaic support component, a photovoltaic component and a torsion power component, wherein the photovoltaic component and the torsion power component are arranged in the north-south direction, the photovoltaic support component is obliquely fixed at the upper end of the parking space support in the north-south direction, the photovoltaic component is fixed on the photovoltaic support component, the photovoltaic support component comprises a horizontal fixing component of a rectangular frame type structure and a vertically arranged photovoltaic support, the top end of the photovoltaic support is fixed below the horizontal fixing component through a scaffold fastener, the bottom end of the photovoltaic support is fixed at the upper end of the parking space support, the photovoltaic component is fixed on the horizontal fixing component in a matrix form, and the torsion power component is connected with the photovoltaic component and enables the photovoltaic component to rotate in a left-right reciprocating mode in the horizontal direction;
the horizontal fixing assembly comprises a plurality of door-shaped fixing frames and a horizontal supporting frame, the door-shaped fixing frames are fixed on the periphery of the photovoltaic assembly, the horizontal supporting frame is fixed into a grid shape by a plurality of cross rods, each door-shaped fixing frame is fixed on the cross rods arranged in the south-north direction of the horizontal supporting frame through a horizontal rotating frame, and the horizontal supporting frame on the cross rods arranged in the same south-north direction forms a parallelogram linkage mechanism through a left linkage cable and a right linkage cable; the horizontal rotating frame comprises a rotating fixing seat, a horizontal supporting rod, a semicircular guide rail and a guide clamping groove, the rotating fixing seat is fixed on a cross rod arranged in the north-south direction of the horizontal supporting frame through a rotating shaft, the middle part of the horizontal supporting rod is fixed on the upper end surface of the rotating fixing seat, the left end and the right end of the horizontal supporting rod are fixed with the adjacent horizontal supporting rod on the cross rod arranged in the same north-south direction through a carriage bolt and a linkage inhaul cable, the guide clamping groove is fixed in the south on the same cross rod with the rotating fixing seat, the semicircular guide rail is fixed on the horizontal supporting rod and clamped in the guide clamping groove, the opening direction of the semicircular guide rail is arranged in the north direction, and the rotating shaft of the rotating fixing seat is positioned in the circle center of the semicircular guide rail; the door-shaped fixed frame is obliquely fixed on the horizontal rotating frame through the north and south of the inclined stay bar, one end of the inclined stay bar is fixed on the door-shaped fixed frame, and the other end of the inclined stay bar is fixed on the horizontal support bar.
The torsion power assembly comprises an electric push-pull rod, a linkage push-pull rod and a plurality of crossed cables, one end of each crossed cable is fixed to the bottom end of the corresponding portal-shaped fixed frame, the other end of each crossed cable is fixed to the linkage push-pull rod, the bottom end of each portal-shaped fixed frame is provided with two crossed cables which are crossed to form an X shape, one end of the electric push-pull rod is fixed to the horizontal support frame, and the other end of the electric push-pull rod is fixed to the middle of the linkage push-pull rod.
The bottom of the parking space support is provided with a fixed base.
The height of the parking space support is at least 3m.
The included angle between the door-shaped fixed frame and the horizontal plane is 5-45 degrees.
The parking space support is characterized by further comprising reflective curtains arranged on the north and south sides of the parking space support, wherein diffuse reflection reflective coatings are arranged on the outer surface layers of the reflective curtains, and the reflective curtains are fixed to the top end of the parking space support through rectangular fixed frames.
The north-south spacing of adjacent photovoltaic support assemblies is at least 2.1 meters and the east-west spacing is at least 2.3 meters.
The beneficial effects of the utility model are that: due to the fact that photovoltaic power generation is used in the parking lot, solar energy is reasonably utilized for power generation, and the purposes of energy conservation and emission reduction are achieved.
Drawings
Fig. 1 is a schematic top view of a photovoltaic power generation rack parking lot of the present disclosure;
FIG. 2 is a schematic side view structural view of a photovoltaic power generation rack parking lot of the present disclosure;
FIG. 3 is a schematic view of a structure of a parking space in a field according to the present disclosure;
FIG. 4 is a schematic structural view of a horizontal securing assembly of the present disclosure;
fig. 5 is a schematic structural view of a sprag portion of the present disclosure.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, however, other ways of implementing the invention may be devised different from those described herein, and it will be apparent to those skilled in the art that the invention can be practiced without departing from the spirit and scope of the invention.
In a specific embodiment, as shown in fig. 1 to 5, an automatic tracking high-efficiency photovoltaic power generation support parking lot comprises a parking space, wherein a plurality of photovoltaic power generation supports distributed in a matrix are arranged on the parking space, each photovoltaic power generation support comprises a parking space support 1, a photovoltaic support assembly, photovoltaic assemblies arranged in the south-north direction and a torsion power assembly, the north of each photovoltaic support assembly is obliquely fixed at the upper end of the parking space support 1 in the north-south direction, the south-north distance between every two adjacent photovoltaic support assemblies is at least 2.1 meters, the east-west distance is at least 2.3 meters, the photovoltaic assemblies are fixed on the photovoltaic support assemblies, each photovoltaic support assembly comprises a horizontal fixing assembly and a vertically arranged photovoltaic support, the top of each photovoltaic support is fixed below the horizontal fixing assembly through a scaffold fastener, the bottom of each photovoltaic support is fixed at the upper end of the parking space support 1, the photovoltaic assemblies are fixed on the horizontal fixing assembly in a matrix form, the torsion power assembly is connected with the photovoltaic assemblies and enables the photovoltaic assemblies to rotate back and forth in the horizontal direction, a fixed base is arranged at the bottom of the parking space support 1, and stability is at least 3m of the parking space support 1;
the horizontal fixing assembly comprises a plurality of door-shaped fixing frames 2 and a horizontal support frame 3 which are fixed on the periphery of the photovoltaic assembly, the horizontal support frame 3 is fixed into a grid shape by a plurality of cross rods, each door-shaped fixing frame 2 is fixed on the cross rod arranged in the north-south direction of the horizontal support frame 3 through a horizontal rotating frame, and the horizontal support frame 3 on the cross rod arranged in the same north-south direction forms a parallelogram linkage mechanism through a left linkage inhaul cable and a right linkage inhaul cable 4; the horizontal rotating frame comprises a rotating fixing seat 5, a horizontal supporting rod 6, a semicircular guide rail 7 and a guide clamping groove 8, wherein the rotating fixing seat 5 is fixed on a cross rod arranged in the north-south direction of the horizontal supporting frame 3 through a rotating shaft, the middle part of the horizontal supporting rod 6 is fixed on the upper end surface of the rotating fixing seat 5, the left end and the right end of the horizontal supporting rod 6 are fixed with the adjacent horizontal supporting rod 6 on the cross rod arranged in the north-south direction through a carriage bolt and a linkage inhaul cable 4, the guide clamping groove 8 is fixed in the south on the same cross rod with the rotating fixing seat 5, the semicircular guide rail 7 is fixed on the horizontal supporting rod 6 and clamped in the guide clamping groove 8, the opening direction of the semicircular guide rail 7 is arranged in the north direction, and the rotating shaft of the rotating fixing seat 5 is positioned at the circle center of the semicircular guide rail 7; the door-shaped fixed frame 2 is obliquely fixed on the horizontal rotating frame through the inclined stay bars 9 in the north direction and the south direction, one ends of the inclined stay bars 9 are fixed on the door-shaped fixed frame 2, and the other ends of the inclined stay bars are fixed on the horizontal support bars 6.
The torsion power assembly comprises an electric push-pull rod, a linkage push-pull rod and a plurality of crossed cables, one end of each crossed cable is fixed to the bottom end of the corresponding portal-shaped fixed frame, the other end of each crossed cable is fixed to the linkage push-pull rod, the bottom end of each portal-shaped fixed frame is provided with two crossed cables which are crossed to form an X shape, one end of the electric push-pull rod is fixed to the horizontal support frame, and the other end of the electric push-pull rod is fixed to the middle of the linkage push-pull rod.
The included angle between the door-shaped fixed frame and the horizontal plane is 5-45 degrees.
The parking space support is characterized by further comprising light reflecting curtains 10 arranged on the north and south sides of the parking space support, wherein sunlight can be reflected by the photovoltaic modules, diffuse reflection light reflecting coatings are arranged on the outer surface layers of the light reflecting curtains 10, and the light reflecting curtains 10 are fixed to the top end of the parking space support 1 through rectangular fixing edges.
The utility model discloses when using, be provided with a plurality of photovoltaic power generation supports that become the matrix and distribute on the place parking stall, owing to used photovoltaic power generation in the parking area, rational utilization solar energy generates electricity, reaches energy saving and emission reduction's purpose. Because adopt scaffold frame fastener to fix, easy dismounting, semicircular guide rail 7 sets up in the south of rotating the fixing base 5, and photovoltaic module's focus is in door shape fixed frame 2's below, and semicircular guide rail 7 is not oppressed for its pivoted frictional force reduces, required power reduces.
The above is only the preferred embodiment of the present invention, and any person can make some simple modifications, deformations and equivalent replacements according to the present invention, all fall into the protection scope of the present invention.
Claims (7)
1. The utility model provides an automatic high-efficient photovoltaic power generation support parking area trails, includes place parking stall, its characterized in that: the parking lot is characterized in that a plurality of photovoltaic power generation supports distributed in a matrix manner are arranged on a parking lot, each photovoltaic power generation support comprises a parking lot support (1), a photovoltaic support component, a photovoltaic component and a torsion power component, the photovoltaic support component is arranged in the north-south direction, the north-south direction of the photovoltaic support component is obliquely fixed at the upper end of the parking lot support (1), the photovoltaic component is fixed on the photovoltaic support component, the photovoltaic support component comprises a horizontal fixing component and a vertically arranged photovoltaic support, the top end of the photovoltaic support is fixed below the horizontal fixing component through a scaffold fastener, the bottom end of the photovoltaic support is fixed at the upper end of the parking lot support (1), the photovoltaic component is fixed on the horizontal fixing component in a matrix manner, and the torsion power component is connected with the photovoltaic component and enables the photovoltaic component to rotate in a left-right reciprocating manner in the horizontal direction;
the horizontal fixing assembly comprises a plurality of door-shaped fixing frames (2) and a horizontal supporting frame (3), the door-shaped fixing frames (2) are fixed on the periphery of the photovoltaic assembly, the horizontal supporting frame (3) is fixed into a grid shape like a Chinese character 'tian' by a plurality of cross rods, each door-shaped fixing frame (2) is fixed on the cross rod arranged in the north-south direction of the horizontal supporting frame (3) through a horizontal rotating frame, and the horizontal supporting frame (3) on the cross rod arranged in the same north-south direction forms a parallelogram linkage mechanism through a left linkage inhaul cable and a right linkage inhaul cable (4); the horizontal rotating frame comprises a rotating fixing seat (5), a horizontal supporting rod (6), a semicircular guide rail (7) and a guiding clamping groove (8), the rotating fixing seat (5) is fixed on a cross rod arranged in the south-north direction of the horizontal supporting frame (3) through a rotating shaft, the middle part of the horizontal supporting rod (6) is fixed on the upper end face of the rotating fixing seat (5), the left end and the right end of the horizontal supporting rod (6) are fixed with the adjacent horizontal supporting rod (6) on the cross rod arranged in the same south-north direction through a carriage bolt and a linkage inhaul cable (4), the guiding clamping groove (8) is fixed in the south of the cross rod identical to the rotating fixing seat (5), the semicircular guide rail (7) is fixed on the horizontal supporting rod (6) and clamped in the guiding clamping groove (8), the opening direction of the semicircular guide rail (7) is arranged in the north direction, and the rotating shaft of the rotating fixing seat (5) is positioned at the circle center of the semicircular guide rail (7); the door-shaped fixed frame (2) is obliquely fixed on the horizontal rotating frame through the inclined stay bar (9) in the north, the south and the low directions, one end of the inclined stay bar (9) is fixed on the door-shaped fixed frame (2), and the other end of the inclined stay bar is fixed on the horizontal support bar (6).
2. The automatic tracking high-efficiency photovoltaic power generation support parking lot according to claim 1, characterized in that: the torsion power assembly comprises an electric push-pull rod, a linkage push-pull rod and a plurality of crossed cables, one end of each crossed cable is fixed to the bottom end of the corresponding portal-shaped fixing frame, the other end of each crossed cable is fixed to the linkage push-pull rod, the bottom end of each portal-shaped fixing frame is provided with two crossed cables which are crossed to form an X shape, one end of the electric push-pull rod is fixed to the horizontal support frame, and the other end of the electric push-pull rod is fixed to the middle of the linkage push-pull rod.
3. The automatic tracking high-efficiency photovoltaic power generation support parking lot according to claim 1, characterized in that: the bottom of the parking space support (1) is provided with a fixed base.
4. The automatic tracking high-efficiency photovoltaic power generation support parking lot according to claim 1, characterized in that: the height of the parking space support (1) is at least 3m.
5. The automatic tracking high-efficiency photovoltaic power generation support parking lot according to claim 1, characterized in that: the included angle between the door-shaped fixed frame and the horizontal plane is 5-45 degrees.
6. The automatic tracking high-efficiency photovoltaic power generation support parking lot according to claim 1, characterized in that: the parking space support is characterized by further comprising reflective curtains (10) arranged on the north and south sides of the parking space support, diffuse reflection reflective coatings are arranged on the outer surface layers of the reflective curtains (10), and the reflective curtains (10) are fixed to the top end of the parking space support (1) through rectangular fixed frames.
7. The automatic tracking high-efficiency photovoltaic power generation support parking lot according to claim 1, characterized in that: the north-south spacing of adjacent photovoltaic support assemblies is at least 2.1 meters and the east-west spacing is at least 2.3 meters.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222221722.2U CN218375619U (en) | 2022-08-23 | 2022-08-23 | Automatic tracking high-efficiency photovoltaic power generation support parking lot |
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CN202222221722.2U CN218375619U (en) | 2022-08-23 | 2022-08-23 | Automatic tracking high-efficiency photovoltaic power generation support parking lot |
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CN218375619U true CN218375619U (en) | 2023-01-24 |
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CN202222221722.2U Active CN218375619U (en) | 2022-08-23 | 2022-08-23 | Automatic tracking high-efficiency photovoltaic power generation support parking lot |
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- 2022-08-23 CN CN202222221722.2U patent/CN218375619U/en active Active
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