CN218843462U - Energy-saving low-energy-consumption concave-convex photovoltaic glass curtain wall structure - Google Patents
Energy-saving low-energy-consumption concave-convex photovoltaic glass curtain wall structure Download PDFInfo
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- CN218843462U CN218843462U CN202223130423.4U CN202223130423U CN218843462U CN 218843462 U CN218843462 U CN 218843462U CN 202223130423 U CN202223130423 U CN 202223130423U CN 218843462 U CN218843462 U CN 218843462U
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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
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B10/00—Integration of renewable energy sources in buildings
- Y02B10/10—Photovoltaic [PV]
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Abstract
The utility model discloses an energy-saving low-energy consumption concave-convex photovoltaic glass curtain wall structure, including the curtain wall frame that comprises curtain wall stand (1) and curtain wall crossbeam (2), be equipped with the interior concave type curtain wall glass (3) and protruding formula curtain wall glass (4) that crisscross distributed each other on the curtain wall frame, the interior concave type curtain wall glass (3) outside is equipped with notch (5), be equipped with photovoltaic glass (7) on the bottom surface of notch (5) and/or the lateral wall face of notch (5), photovoltaic glass (7) both ends are equipped with joint spare (8); the outer side surface of the curtain wall upright post (1) is provided with a side clamping groove (9) matched with the clamping piece (8), and the upper side or the lower side of the curtain wall cross beam (2) is provided with a top-bottom clamping groove (10) matched with the clamping piece (8); the photovoltaic glass (7) is connected with a storage power supply (11) through a power supply circuit. The utility model has the characteristics of can realize that photovoltaic glass uses by a large scale on facade glass curtain wall.
Description
Technical Field
The utility model relates to an unsmooth glass curtain wall construction, especially an energy-saving low energy consumption unsmooth formula photovoltaic glass curtain wall construction.
Background
With the development of modern buildings, glass curtain walls occupy larger and larger specific weight, and glass curtain walls with concave-convex forms are more and more common. Unsmooth glass curtain indicates installs indent glass and protrusion glass according to certain law on curtain fossil fragments frame, and indent curtain glass forms certain recess to indoor indentation certain distance, matches with protrusion glass, forms concave-convex structure in the vision. The solar photovoltaic glass is a special glass which is laminated into a solar cell, can generate electricity by utilizing solar radiation and is provided with a relevant current leading-out device and a cable; in order to improve the utilization of solar illumination, photovoltaic glass is gradually installed on buildings such as glass curtain walls and roofs, but the photovoltaic glass is difficult to be applied to facade glass curtain walls in a large area due to the influence of plate limitation and limitation of self color and light transmission effect of glass plates. Therefore, the problem that the photovoltaic glass is difficult to be applied to the facade glass curtain wall in a large area exists in the prior art.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an energy-saving low energy consumption concave-convex photovoltaic glass curtain wall construction. The utility model has the characteristics of can realize that photovoltaic glass uses by a large scale on facade glass curtain wall.
The technical scheme of the utility model: an energy-saving type low-energy-consumption concave-convex photovoltaic glass curtain wall structure comprises a curtain wall framework consisting of curtain wall stand columns and curtain wall cross beams, wherein concave curtain wall glass and convex curtain wall glass which are distributed in a mutually staggered mode are arranged on the curtain wall framework, a notch is formed in the outer side of the concave curtain wall glass, photovoltaic glass is arranged on the bottom surface of the notch and/or the side wall surface of the notch, and clamping pieces are arranged at two ends of the photovoltaic glass; the outer side surface of the curtain wall upright post is provided with a side clamping groove matched with the clamping piece, and the upper side or the lower side of the curtain wall cross beam is provided with a top and bottom clamping groove matched with the clamping piece; the photovoltaic glass is connected with a storage power supply through a power supply circuit.
In the aforesaid energy-saving low energy consumption concavo-convex photovoltaic glass curtain wall structure, the joint spare outside that is located the outside is equipped with the light trough, is equipped with lamps and lanterns in the light trough, and lamps and lanterns link to each other with the storage power through the electric wire.
In the energy-saving low-energy-consumption concave-convex photovoltaic glass curtain wall structure, the joint part comprises a joint part body, the inner end of the joint part body is provided with a bayonet, one side of the joint part body is provided with a photovoltaic glass installation cavity, and the other side of the joint part body is provided with a compression joint block.
In the aforesaid unsmooth formula photovoltaic glass curtain wall structure of energy-saving low energy consumption, be equipped with the power in curtain stand and/or the curtain crossbeam and place the chamber, the power is placed the chamber side and is equipped with the dismantlement formula buckle.
In the aforesaid energy-saving low energy consumption concave-convex photovoltaic glass curtain wall structure, the top of notch is equipped with the shrouding, and the shrouding outside is equipped with second light trough and second lamps and lanterns.
In the aforementioned energy-saving low-energy-consumption concave-convex photovoltaic glass curtain wall structure, the inner sides of the concave type curtain wall glass and the convex type curtain wall glass are both provided with the hidden intelligent electric shading system, and the hidden intelligent electric shading system is connected with the storage power supply through an electric wire.
In the energy-saving low-energy-consumption concave-convex photovoltaic glass curtain wall structure, both the concave curtain wall glass and the convex curtain wall glass are hollow low-e glass.
In the energy-saving low-energy consumption concave-convex photovoltaic glass curtain wall structure, the lamp trough and the second lamp trough respectively comprise fixing parts, and lamp mounting clamping parts are arranged on the outer sides of the fixing parts; the fixing piece is connected with the curtain wall cross beam or the curtain wall upright post through a bolt.
Compared with the prior art, the utility model discloses a bottom surface and/or side at unsmooth structure facade glass curtain wall recess department set up photovoltaic glass to store the power through setting up and be used for the energy storage, can enough fine utilization sunlight provides the energy like this (the electric energy can be for the floodlight system and the electronic solar shading system power supply of hidden intelligence that lamps and lanterns constitute, thereby can effectively reduce power consumption, has good energy-conserving effect), also can not influence the whole effect of outer facade simultaneously, and then can realize that photovoltaic glass uses by a large scale on facade glass curtain wall. The utility model discloses a specific joint spare structure cooperatees with the joint groove on curtain stand and the curtain crossbeam to can be fine combine photovoltaic glass and unsmooth glass, realized the integrated design, simple structure and compactness, be convenient for install and dismantle, still have good stability. To sum up, the utility model has the characteristics of can realize that photovoltaic glass uses by a large scale on facade glass curtain wall.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a view taken in the direction A of FIG. 1;
FIG. 3 is an enlarged view of a portion of FIG. 2;
FIG. 4 is a structural view of the clip;
FIG. 5 is a view taken along line B of FIG. 1;
fig. 6 is a partially enlarged view of fig. 5.
The labels in the figures are: 1-curtain wall upright post, 2-curtain wall beam, 3-concave curtain wall glass, 4-convex curtain wall glass, 5-notch, 6-closing plate, 7-photovoltaic glass, 8-clamping piece, 9-side clamping groove, 10-top-bottom clamping groove, 11-storage power supply, 12-lamp groove, 13-lamp, 801-clamping piece body, 802-bayonet, 803-photovoltaic glass installation cavity, 804-pressing block, 14-power supply placing cavity, 15-detachable buckle plate, 16-aluminum alloy core insert, 17-hidden intelligent electric shading system, 18-fixing piece and 19-lamp installation clamping piece.
Detailed Description
The present invention will be further described with reference to the drawings and examples, which should not be construed as a limitation to the present invention.
Examples are given. An energy-saving type low-energy-consumption concave-convex photovoltaic glass curtain wall structure is shown in figures 1-6 and comprises a curtain wall framework consisting of curtain wall upright posts 1 and curtain wall cross beams 2, wherein concave curtain wall glass 3 and convex curtain wall glass 4 which are distributed in a mutually staggered manner are arranged on the curtain wall framework, a notch 5 is arranged on the outer side of the concave curtain wall glass 3, photovoltaic glass 7 is arranged on the bottom surface of the notch 5 and/or the side wall surface of the notch 5, and clamping pieces 8 are arranged at two ends of the photovoltaic glass 7; the outer side surface of the curtain wall upright post 1 is provided with a side clamping groove 9 matched with the clamping piece 8, and the upper side or the lower side of the curtain wall cross beam 2 is provided with a top and bottom clamping groove 10 matched with the clamping piece 8; the photovoltaic glass 7 is connected with a storage power supply 11 through a power supply circuit.
The outer side of the clamping piece 8 positioned at the outer side is provided with a lamp groove 12, a lamp 13 is arranged in the lamp groove 12, and the lamp 13 is connected with a storage power supply 11 through an electric wire.
The clamping piece 8 comprises a clamping piece body 801, a clamping opening 802 is formed in the inner end of the clamping piece body 801, a photovoltaic glass installation cavity 803 is formed in one side of the clamping piece body 801, and a clamping block 804 is formed in the other side of the clamping piece body 801.
Be equipped with the power in curtain wall stand 1 and/or the curtain wall crossbeam 2 and place chamber 14, the power is placed the chamber 14 sides and is equipped with dismantlement formula buckle 15.
The top of the notch 5 is provided with a sealing plate 6, and the outer side of the sealing plate 6 is provided with a second lamp groove and a second lamp.
The inner sides of the concave curtain wall glass 3 and the convex curtain wall glass 4 are respectively provided with a hidden intelligent electric shading system 17, and the hidden intelligent electric shading system 17 is connected with the storage power supply 11 through an electric wire.
The concave curtain wall glass 3 and the convex curtain wall glass 4 are both hollow low-e glass.
The lamp trough 12 and the second lamp trough comprise fixing parts 18, and lamp mounting fasteners 19 are arranged on the outer sides of the fixing parts 18; the fixing piece 18 is connected with the curtain wall beam 2 or the curtain wall upright post 1 through bolts.
An aluminum alloy inserting core 16 is further arranged between the curtain wall cross beam and the curtain wall upright post.
Be equipped with two side joint grooves on the curtain stand, and the joint direction in two side joint grooves is the same, the installation of the joint piece of being convenient for like this, joint piece installation back can be through the light trough with its fastening chucking.
The curtain wall beam is provided with two top and bottom clamping grooves, and the clamping directions of the two top and bottom clamping grooves are the same.
The shrouding upper end is equipped with and pushes up end joint groove matched with joint piece.
The utility model discloses an installation: installing a curtain wall upright post and a curtain wall cross beam to form a curtain wall framework (namely a curtain wall framework structure), then installing concave curtain wall glass according to design requirements, then installing a clamping piece at a corresponding position on the inner side of a notch, gluing and sealing between the clamping piece and the glass, then installing photovoltaic glass in a photovoltaic glass installation cavity of the clamping piece, then installing a clamping piece on the outer side, and then fixing a fixing piece of a lamp groove on the curtain wall cross beam or the curtain wall upright post through bolts to realize the installation of the photovoltaic glass; and then the lamp mounting fastener provided with the lamp is buckled on the fixing piece to realize the mounting of the lamp. The shrouding passes through the cooperation of joint piece and top end joint groove to be installed at the interior top surface of notch, and glue and glass are sealed through to its inboard, and the outside realizes the fastening through the second light trough.
Photovoltaic glass is at the installation, and power supply line links to each other with the storage power through the inboard of curtain crossbeam or curtain stand, stores the electric energy that photovoltaic glass produced, supplies power for the floodlight system and the electronic solar shading system of hidden intelligence that follow-up lamps and lanterns constitute.
Claims (8)
1. The utility model provides an energy-saving low energy consumption concave-convex photovoltaic glass curtain wall construction, includes the curtain wall frame of constituteing by curtain wall stand (1) and curtain wall beam (2), is equipped with the indent formula curtain wall glass (3) and the protrusion formula curtain wall glass (4) that crisscross distribution each other on the curtain wall frame, and indent formula curtain wall glass (3) outside is equipped with notch (5), its characterized in that: the photovoltaic glass (7) is arranged on the bottom surface of the notch (5) and/or the side wall surface of the notch (5), and clamping pieces (8) are arranged at two ends of the photovoltaic glass (7); the outer side surface of the curtain wall upright post (1) is provided with a side clamping groove (9) matched with the clamping piece (8), and the upper side or the lower side of the curtain wall cross beam (2) is provided with a top-bottom clamping groove (10) matched with the clamping piece (8); the photovoltaic glass (7) is connected with a storage power supply (11) through a power supply circuit.
2. The energy-saving low-energy consumption concave-convex photovoltaic glass curtain wall construction as claimed in claim 1, wherein: a lamp groove (12) is arranged on the outer side of the clamping piece (8) positioned on the outer side, a lamp (13) is arranged in the lamp groove (12), and the lamp (13) is connected with a storage power supply (11) through an electric wire.
3. The energy-saving low-energy consumption concave-convex photovoltaic glass curtain wall construction as claimed in claim 1, wherein: the clamping piece (8) comprises a clamping piece body (801), a bayonet (802) is arranged at the inner end of the clamping piece body (801), a photovoltaic glass installation cavity (803) is arranged on one side of the clamping piece body (801), and a clamping block (804) is arranged on the other side of the clamping piece body (801).
4. The energy-saving low-energy consumption concave-convex photovoltaic glass curtain wall construction as claimed in claim 1, wherein: be equipped with power in curtain stand (1) and/or curtain crossbeam (2) and place chamber (14), power is placed the chamber (14) side and is equipped with dismantlement formula buckle (15).
5. The energy-saving low-energy consumption concave-convex photovoltaic glass curtain wall construction as claimed in claim 1, wherein: the top of notch (5) is equipped with shrouding (6), and shrouding (6) outside is equipped with second light trough and second lamps and lanterns.
6. The energy-saving low-energy consumption concave-convex photovoltaic glass curtain wall construction as claimed in claim 1, wherein: the inner sides of the concave curtain wall glass (3) and the convex curtain wall glass (4) are respectively provided with a hidden intelligent electric sunshade system (17), and the hidden intelligent electric sunshade system (17) is connected with the storage power supply (11) through an electric wire.
7. The energy-saving low-energy consumption concave-convex photovoltaic glass curtain wall construction as claimed in claim 1, wherein: the concave curtain wall glass (3) and the convex curtain wall glass (4) are both hollow low-e glass.
8. The energy-saving low-energy consumption concave-convex photovoltaic glass curtain wall construction as claimed in claim 2 or 5, wherein: the lamp trough (12) and the second lamp trough comprise fixing pieces (18), and lamp mounting fasteners (19) are arranged on the outer sides of the fixing pieces (18); the fixing piece (18) is connected with the curtain wall cross beam (2) or the curtain wall upright post (1) through a bolt.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223130423.4U CN218843462U (en) | 2022-11-24 | 2022-11-24 | Energy-saving low-energy-consumption concave-convex photovoltaic glass curtain wall structure |
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CN202223130423.4U CN218843462U (en) | 2022-11-24 | 2022-11-24 | Energy-saving low-energy-consumption concave-convex photovoltaic glass curtain wall structure |
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CN218843462U true CN218843462U (en) | 2023-04-11 |
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CN202223130423.4U Active CN218843462U (en) | 2022-11-24 | 2022-11-24 | Energy-saving low-energy-consumption concave-convex photovoltaic glass curtain wall structure |
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CN (1) | CN218843462U (en) |
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- 2022-11-24 CN CN202223130423.4U patent/CN218843462U/en active Active
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