Effective solar system and method
Enhanced solar panel designs with reflective surfaces and dual-sided power generation, along with power storage, address inefficiencies and location limitations, achieving doubled power generation capacity and integrated energy solutions.
Patent Information
- Application Number
- JP2025070040
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2025-07-23
AI Technical Summary
Current solar systems face inefficiencies and limited suitable locations, and existing solar panels do not maximize sunlight utilization.
The integration of reflective surfaces and dual-sided power generation capabilities within solar panel designs, combined with power storage solutions, enhances sunlight capture and energy conversion.
This approach significantly increases solar panel efficiency, achieving more than double the power generation capacity with the same area, and integrates energy storage for optimal utilization.
Smart Images

Figure 2025108684000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a solar system.
Background Art
[0002] The government aims for carbon neutrality. Although current solar systems are used everywhere as an alternative to current power generation, there are few suitable locations and few lands with good sunlight effects. Also, solar panels are not very efficient.
Summary of the Invention
Problems to be Solved by the Invention
[0003] It is necessary to further improve the efficiency of the solar system.
Means for Solving the Problems
[0004] To achieve the above object, the present invention increases the efficiency of solar energy.
Effects of the Invention
[0005] According to the present invention, the efficiency of the solar panel can be increased, and more than twice the efficiency and power can be obtained with the same area.
Brief Description of the Drawings
[0006]
Figure 1
Figure 2
Figure 3
Figure 4
Figure 5
Figure 6
Figure 7
Figure 8
Figure 9
Figure 10
Figure 11
Figure 12
Figure 13
Embodiments for Carrying Out the Invention
[0007] Hereinafter, embodiments of the present invention will be described with reference to the drawings. In FIG. 1, in a known solar system, A is provided with a solar panel 1 in a planar shape, and B is provided with a solar panel 1 at an angle of, for example, 30 degrees. 2 is the ground, and 3 is a pedestal.
[0008] [First Embodiment] FIG. 2 is an explanatory drawing of the first embodiment of the present invention. The solar panel 1 and the solar panel 11 are provided with their front and back facing each other in opposite directions to form 13, and the solar panel 11 is provided on the back side of the solar panel 1 in a reversed manner.
[0009] When the sun 7 moves westward (from right to left in the figure), the sunlight also moves from 5 to 51. At the position of 5, the sun irradiates the solar panel 1 to generate electricity. Although only three are drawn in the figure, there are actually many.
[0010] When the sun moves to the position of 51, the sunlight 51 is reflected from the surface of the solar panel 1 and irradiated onto the panel 11 inside the solar panel 1 at such an angle and position.
[0011] [Second Embodiment] Figure 3 shows the second embodiment of the present invention. In the first embodiment shown in Figure 2, the back solar panel 11 was provided on the entire back of the front solar panel 1. However, in the second embodiment shown in Figure 3, the back solar panel 12 is provided partially on the back of the solar panel 1, such as from 1 / 3 to 1 / 2 from the light inlet end (left in the figure) of the back solar panel. By doing so, cost reduction and weight reduction can be achieved.
[0012] [Third Embodiment] Figure 4 shows the third embodiment of the present invention. The solar panel 15 uses a front and back power generation solar panel 15 that can generate electricity not only when light hits the front surface but also when light hits the back surface. Even when the sun 7 moves westward (left in the figure), it can generate electricity in the same manner as in Figure 3.
[0013] [Fourth Embodiment] Figure 5 shows the fourth embodiment of the present invention. A water conduit 10 such as rubber or an aluminum pipe is provided between the two solar panels 1 and 11 to obtain both electricity and hot water. Other media may be used instead of water. The solar energy reaches the back side in the same manner as described above. 20 is a heat pipe, 21 is a meter, and 211, 212, and 213 are various meters.
[0014] [Fifth Embodiment] Figure 6(A) shows the fifth embodiment of the present invention. As shown in the figure, the solar panel is divided into two upper and lower stages. The sun generates electricity not only from the front surfaces of the upper panel 15 and the lower panel 17, but also through the route of (1) → (2) → (3) → (4). ((2) illuminates the back surface of the upper solar panel 15, and is further reflected from the back surface to illuminate the back surfaces of (3) and (4) of the lower solar panel 17 to generate electricity. (In the figure, "TIFF2025108684000002.tif32" etc. are denoted as (1) etc. in the specification) TIFF2025108684000002.tif32 etc. are denoted as (1) etc. in the specification
[0015] [Sixth Embodiment] Figure 6(B) shows the sixth embodiment of the present invention. The solar panel 15 is provided on a column 9 that is tall enough for a person 100 to enter. Electricity is generated from both the front and back sides of the solar panel as shown in (1), (2), and (3), and furthermore, reflected light enters to brighten the human space.
[0016] [Embodiment 7] FIG. 6(C) shows the seventh embodiment of the present invention. The double reflection type solar panel system is the same as described above, but in an embodiment where vegetables 101 are planted. Power generation and daylighting (1)→(2)→(3) are possible, which is better than a greenhouse.
[0017] [Embodiment of FIG. 8] FIG. 7 is an explanatory diagram of an embodiment of the present invention. A vertical solar panel 18 that supports the inclination of the inclined solar panel 1 and has power generation ability is provided. The setting sun 5 when the sun sets is reflected on the surface of the inclined solar panel 1 and irradiated onto the vertical solar panel 18 for power generation, resulting in twice the power generation.
[0018] [Embodiment 9] FIG. 8 is an explanatory diagram of the ninth embodiment of the present invention. A solar panel 18 that supports or generates power for the inclined solar panel 1 and a water pipe 19 are provided inside the inclined panel 1. While creating hot water with solar heat, plants and vegetables such as crops 101 are grown on the ground 2, so that plants and crops can be effectively produced in addition to electricity and heat energy. This is an example of the present invention.
[0019] [Embodiment 10] FIG. 9 is an explanatory diagram of the tenth embodiment of the present invention. The setting sun 5 is reflected on the surface of the inclined solar panel 1, then generates power on the back solar panel 11 and is reflected on the surface, and then irradiates the horizontal solar panel 19 for power generation, resulting in a power generation amount of 2 to 3 times.
[0020] [Embodiment 11] FIG. 10 is an explanatory diagram of the eleventh embodiment of the present invention. Conventionally, solar power generation was not possible on the north side roof. The present invention enables solar power generation on the north side roof. As shown in FIG. 10, a reflector 9 is provided on the north side roof. Also, a north side solar panel 11 is provided on the north side roof. Even when it becomes the setting sun 51 on the reflector 9, it can be reflected by 9 and generate power on 11.
[0021] [Embodiment 12] In FIG. 10, the reflector 9 is used as a solar panel, and the glass plate on its surface is used as the reflector in the 12th embodiment of the present invention.
[0022] [Embodiment 13] FIG. 11 shows the 13th embodiment of the present invention. For example, the reflector 9 is supported by a transparent body 91, and heat is stored in the triangular sealed body formed by 9, 11, and 91 against direct sunlight, raising the temperature. By providing the water pipe 10 under the north solar panel 11 and the south solar panel 1, power generation and hot water can be obtained.
[0023] [Embodiment 14] FIG. 12 shows the 14th embodiment of the present invention. A battery 8 is provided inside the support depths of the vertical 3 and the inclined 4 in the shape of a tube of the solar panel 1 to store the excess power generated and release it when the power is insufficient.
[0024] [Embodiment 15] The 15th embodiment of the present invention is that 8 in FIG. 12 is a capacitor instead of a battery.
[0025] [Embodiment 16] FIG. 13 shows the 16th embodiment of the present invention. The solar panel 1 is supported by a gantry 3, and for example, a vinyl sheet 6 is stretched across the gap 6 between the solar panels to form a vinyl greenhouse as a whole, enabling the cultivation of vegetables 101 and power generation, and a part of the electricity can be utilized in the vinyl greenhouse. Conversely, providing solar panels or power generation sheets outside the vinyl greenhouse is also included in the present invention.
Industrial Applicability
[0026] The industrial applicability is extremely high with the epoch-making enhanced energy solar panel method.
Explanation of Signs
[0027] 1 Solar panel 11 North solar panel 101 Crops such as plants and vegetables 2 Ground 3 Vertical solar panel stand 4 Inclined solar stand 5 Sunlight 51 West sunlight 6 Vinyl sheet 7 Sun 8 Capacitors and batteries 9 North roof reflector 90 House 91 North roof reflector support and airtight board 10 Water pipe 11 Rear solar panel 12 Partial solar panel 13 Front and back combined solar panel 14 Front and back half combined solar panel 15 Front and back integrated power generation solar panel 16 Front and back power generation and heat solar panel 17 Lower inclined solar panel 18 Support and vertical solar panel 19 Horizontal solar panel 20 Heat pipe 21 Meter 211 Electric power meter 212 Thermometer 213 Power generation meter
Claims
【Claim 1】 A solar system characterized by combining a solar panel stand with a power storage function such as a capacitor and a battery.
Citation Information
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