Window system provided with blind for solar photovoltaic power generation
11255124 · 2022-02-22
Assignee
Inventors
Cpc classification
E06B9/322
FIXED CONSTRUCTIONS
E06B9/264
FIXED CONSTRUCTIONS
International classification
E06B9/264
FIXED CONSTRUCTIONS
Abstract
The present invention relates to a window system provided with a blind for solar photovoltaic power generation. In the window system of the present invention, a blind provided with solar cells is installed in a space between indoor side windows and outdoor side windows slidably coupled to the inner surfaces of a window frame. With such a configuration, the window system is easy to install and maintain. The window system of the present invention includes a window frame 10; indoor side windows 21 and outdoor side windows 23 slidably coupled to the inner surfaces of the window frame 10; and a blind 100 for solar photovoltaic power generation installed in a space S between the indoor side windows 21 and the outdoor side windows 23.
Claims
1. A window system, comprising: a window frame; indoor side windows and outdoor side windows slidably coupled to inner surfaces of the window frame; and a blind for solar photovoltaic power generation installed in a space (S) between the indoor side windows and the outdoor side windows, wherein the blind comprises: a main body fixed to an upper inside of the window frame; a plurality of blades installed below the main body and each having one side on which solar cells are provided, wherein the blades are connected via a driving line and arranged to be spaced apart from each other; and an electric condenser electrically connected to the blades and responsible for storing electric energy generated by the solar cells, and wherein, on an outdoor side of the window frame, a barrier made of various materials is installed at a lower section (B) of an opening of the window frame; and among the blades arranged to be spaced apart from each other in a vertical direction in the opening of the window frame, only the blades located in an upper section (A) of the opening of the window frame where the barrier is not installed are provided with the solar cells and wherein the blades in the lower section where the barrier is installed do not have solar cells, and the barrier extends between two vertical members of the window frame.
2. The window system according to claim 1, wherein the blind further comprises an inverter electrically connected to the blades and responsible for converting direct current energy generated by the solar cells into alternating current energy.
3. The window system according to claim 1, wherein the main body is fitted in a snap-fit manner to a fixed bracket installed on an upper inner surface of the window frame.
4. The window system according to claim 1, wherein an actuator for automatically operating the blades on a sunny day or during periods of high insolation is provided inside the main body, wherein the actuator comprises a light sensor for detecting an amount of sunlight; and a driving motor for rotating, in a forward or reverse direction, a winding roller for winding the driving line to automatically adjust folding or unfolding and angles of the blades based on a signal detected by the light sensor.
5. The window system according to claim 1, wherein each of the blades comprises a base layer formed of any one of a printed circuit board (PCB), polyvinyl chloride (PVC), acrylic styrene acrylonitrile (ASA), aluminum, and wood; the solar cells laminated on an upper portion of the base layer; and an epoxy resin layer laminated on upper portions of the solar cells.
6. The window system according to claim 1, wherein each of the blades comprises a base layer formed of any one of a printed circuit board (PCB), polyvinyl chloride (PVC), acrylic styrene acrylonitrile (ASA), aluminum, and wood; the solar cells laminated on an upper portion of the base layer; an ethylene-vinyl acetate (EVA) resin layer laminated on upper portions of the solar cells; and a polyethylene terephthalate (PET) film layer or thin glass layer laminated on an upper portion of the EVA resin layer.
7. The window system according to claim 1, wherein each of the blades comprises a base layer formed of any one of a printed circuit board (PCB), polyvinyl chloride (PVC), acrylic styrene acrylonitrile (ASA), aluminum, and wood; the solar cells laminated on an upper portion of the base layer; and an injection-molded cover disposed on upper portions of the solar cells to fix positions of the solar cells.
8. The window system according to claim 1, wherein the blades are connected via flexible printed circuit board (FPCB) wires capable of being flexibly folded or unfolded.
9. The window system according to claim 1, wherein, the barrier is made of glass.
10. A window system, comprising: a window frame; single-pane or double-pane windows slidably coupled to inner surfaces of the window frame; and a blind for solar photovoltaic power generation installed at an indoor side of the window frame, wherein the blind comprises: a main body fixed to an upper inside of the window frame; a plurality of blades installed below the main body and each having one side on which solar cells are provided, wherein the blades are connected via a driving line and arranged to be spaced apart from each other; and an electric condenser electrically connected to the blades and responsible for storing electric energy generated by the solar cells, and wherein, on an outdoor side of the window frame, a barrier made of various materials is installed at a lower section (B) of an opening of the window frame; and among the blades arranged to be spaced apart from each other in a vertical direction in the opening of the window frame, only the blades located in an upper section (A) of the opening of the window frame where the barrier is not installed are provided with the solar cells, and wherein the blades in the lower section where the barrier is installed do not have solar cells, and the barrier extends between two vertical members of the window frame.
11. The window system according to claim 10, wherein the barrier is made of glass.
Description
DESCRIPTION OF DRAWINGS
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BEST MODE
(14) Hereinafter, the functions or constructions of preferred embodiments of the present invention will now be described more fully with reference to the accompanying drawings.
(15) Here, when reference numerals are applied to constituents illustrated in each drawing, it should be noted that like reference numerals indicate like elements throughout the specification.
(16)
(17) Referring to
(18) The configuration of the present invention will be described in detail as follows.
(19) The window frame 10 constitutes the outer frame of the window system 1, and the top and bottom inside the window frame 10 are provided with a plurality of rails. In this case, the indoor side windows 21 and the outdoor side windows 23, which are each configured in pairs, are coupled to the rails so as to be openable/closable in a sliding manner.
(20) In this case, a predetermined space S is provided between the indoor side windows 21 and the outdoor side windows 23 coupled in the window frame 10 so that the blind 100 for solar photovoltaic power generation (hereinafter referred to as ‘blind’) is installed therein.
(21) Solar cells 123 (photovoltaic, PV) are disposed on one surface (the outdoor side of the window system) of the blind 100 installed in the space S between the indoor side windows 21 and the outdoor side windows 23, and the blind 100 serves to convert the light energy of sunlight entering the room through the outdoor side windows 23 into electric energy.
(22) Referring to
(23) In addition, the blind 100 may further include an inverter (not shown) electrically connected to the blades 120 and responsible for converting direct current electric energy generated by the solar cells 123 into alternating current electric energy.
(24) Referring to
(25)
(26) Referring to
(27) Referring to
(28) Referring to
(29) That is, to perform packing of the blade 120, the solar cells 123 are disposed on the base layer 121 constituting the main body of the blade 120, the EVA resin layer 126 serving as a mounting agent is laminated on upper portions of the solar cells 123, and the PET film layer or thin glass layer 127 serving as a cover sheet is laminated thereon.
(30) Referring to
(31) In this case, the solar cells 123 installed in each of the blades 120 are provided in plural and are connected in series. That is, the polarity of a solar cell is determined by the direction of light. The side of a solar cell directly receiving sunlight becomes a negative (−) electrode, and the opposite side becomes a positive (+) electrode. Accordingly, to connect a plurality of solar cells in series, the opposite sides of the solar cells should be connected to each other. The wiring structure for connecting the solar cells 123 is in accordance with a known technique, and thus detailed description thereof will be omitted.
(32) Referring to
(33) Referring back to
(34) Specifically, the actuator 140 may include a light sensor 141 for detecting the amount of sunlight and a driving motor 143 for rotating, in a forward or reverse direction, a winding roller 115 for winding the driving line 113 to automatically adjust folding/unfolding and angles of the blades 120 based on a signal detected by the light sensor 141.
(35) However, the present invention is not limited thereto, and a user may manually operate the blind 100 according to the present invention.
(36) In addition, the principle of adjusting folding/unfolding and angles of the blades 120 of the blind 100 using the driving line 113 is the same as the principle applied to a conventional blind, and thus description thereof will be omitted.
(37) As shown in
(38) In addition, referring to
(39) In one embodiment, instead of a conventional steel barrier, the glass barriers 30 may be installed on the outdoor side of the window frame 10 to prevent shadows from occurring at a lower portion of the opening of the window frame 10.
(40) In another embodiment, as shown in
(41) In still another embodiment, on the outdoor side of the window frame 10, a barrier 31 made of various materials (steel, synthetic resins, and the like) may be provided at a lower portion of the opening of the window frame 10. In this case, among the blades 120 arranged to be spaced apart from each other in the vertical direction in the opening of the window frame 10, only the blades 120 located in the upper portion of the opening where the barrier is not installed may be provided with the solar cells 123.
(42) That is, as shown in
(43) As described above, in the window system 1 provided with a blind for solar photovoltaic power generation according to the present invention, the blind 100 provided with the solar cells 123 is disposed in the space S between the indoor side windows 21 and the outdoor side windows 23. Thus, the blind 100 is easy to install and maintain.
(44) In addition, the actuator 140 including the light sensor 141 is provided inside the main body 110 so that the blind 100 operates automatically on a sunny day or during periods of high insolation, thereby improving power generation efficiency.
(45) As described above, the present invention has been described with reference to certain preferred embodiments, but the present invention is not limited to the above-described embodiments, and various changes and modifications may be made without departing from the spirit of the present invention.
(46) In particular, in the present invention, a case wherein the blind 100 for solar photovoltaic power generation is installed in the space S between the indoor side windows 21 and the outdoor side windows 23 has been described. However, the present invention is not limited thereto, and a case wherein the blind 100 is installed on the indoor side of the window frame 10 composed of single-pane or double-pane windows may be applied to the present invention.
(47) In addition to the above-described window system, the blind 100 for solar photovoltaic power generation may be applied to a full window (an approximately 2-meter-high window installed on a veranda), a half window (an approximately 1-meter-high window installed on a main room or a second room), a window provided with glass barriers, or a window split into various patterns, such as a horizontally split window.
(48) TABLE-US-00001 Description of Symbols 1: WINDOW SYSTEM 10: WINDOW FRAME 11: TRANSOM 21: INDOOR SIDE WINDOWS 23: OUTDOOR SIDE WINDOWS 30: GLASS BARRIERS 31: BARRIER FORMED OF VARIOUS MATERIALS 100: BLIND FOR SOLAR PHOTOVOLTAIC POWER GENERATION 110: MAIN BODY 111: FIXED BRACKET 113: DRIVING LINE 115: WINDING ROLLER 120: BLADES 121: BASE LAYER 123: SOLAR CELLS 125: EPOXY RESIN LAYER 126: EVA RESIN LAYER 127: PET FILM LAYER OR THIN GLASS LAYER 129: FPCB WIRES 130: ELECTRIC CONDENSER 140: ACTUATOR 141: LIGHT SENSOR 143: DRIVING MOTOR