Solar power generation equipment
Abstract
[Subject] This invention is that light sources including sunlight secure more electric power also at the place which is not obtained directly and the place which can secure only a narrow area, and introduces solar power generation (photovoltaics) equipment also at the use and place where installation was conventionally made difficult. [Solution means] Have perpendicular or an angle of gradient for each solar power generation (photovoltaics) part, perform two or more arrangement, and into the crevice portion, Each power generation part forms the equipment it enabled it to generate efficiently using the material in which the refraction effects, such as a prism, and a lens and the reflective effect are possible by installing the light received from the light source so that it can receive from the front of each power generation part. [Selection figure] Fig. 2
Term
Term ended
Projected expiry passed 5 April 2024, 2.5 years ago.
- Priority and filed
- Published
- Projected expiry
- Today
4 claims: 3 independent, 1 dependent
- 1A power generation unit for solar power generation (hereinafter referred to as a plate) is arranged at an inclination angle from a surface (horizontal plane) that receives light from the front, or a plurality of plates arranged vertically. A device characterized by refracting or reflecting light received from the front in between, and receiving light on a plate with an inclination angle or on the front of a vertically arranged plate. ソーラー発電(太陽光発電)用の発電部(以下、プレートという)を、光を正面から受ける面(水平面)より、傾斜角度を付けて配置、もしくは垂直に配置された複数のプレートとプレートとの間に正面より受けた光を屈折、又は反射させて、傾斜角度を設けたプレート、もしくは垂直に配置されたプレート正面に光を受けられることを特長とした装置。
- 3Multiple plates installed in a place where light cannot be directly received from a light source are glass, acrylics, lenses, reflective media such as mirrors, and glass installed in a place where light can be received. A device that can generate power by indirectly irradiating each plate with light due to the influence of fibers and the like. 光源から直接的に光を受けることが出来ない場所において設置された複数のプレートは、光を受けることが出来る場所に設置された、ガラス類、アクリル類、レンズ類、鏡等の反射媒体、グラスファイバー等の影響で、間接的に各プレートに光を照射させることで、発電を行うことが可能な装置。
- 4Claim that the light emitted to each plate can increase the brightness of the light at the time of reaching the plate by using the action of a lens or the like in order to increase the intensity of the light indirectly irradiated. 1,2,3 devices. 各プレートに照射される光は、間接的に照射される光の強さを高める為に、レンズ等の作用を用いて、プレートに到達する時点の光を明るさを高めることが可能な請求項1,2,3の装置。
Independent claims3
13 paragraphs, as filed
The present invention is in the field of solar power generation (photovoltaic power generation).
Background technology
A conventional solar power generation (solar power generation) device shows a high power generation effect when it receives a light source directly from the power generation unit and at an angle close to the front. Furthermore, in order to secure a high amount of power generation, it is necessary to receive light in a larger area in order to secure a large amount of power.
<p>However, it is difficult to secure a larger area in a densely populated area such as the city center, and even in various products with the theme of securing natural energy these days, the rooftop and roof of the building It is known that it is trying to secure more energy by installing it on the roof. Next, in the above-ground part, it is possible to receive sunlight mainly directly, but in the metropolitan area where the underground structure is developed, there are many places that cannot receive direct light. Therefore, it was considered difficult to generate the power in such a place. In addition, not only solar power generation equipment but also equipment combined with wind power generation equipment (generally called hybrid equipment) is a place where it is difficult to receive too much wind from the natural environment. In some cases, the device configuration is assisted by sunlight to secure power, but this is also limited to places where sunlight can be directly received.</p>
<p>The device of the present invention contributes to an energy-saving society by providing a device capable of generating power even in a place where a light source such as sunlight cannot be directly obtained as described above.</p><p>Then, I would like to explain what kind of place is a place that cannot receive direct light. The underground space, the inside of the building, the closed space such as the tunnel and the sewer, which I explained earlier, Although it is typical, due to the technical problem of the amount of power generated per area that the current solar power generation equipment itself has, for example, even if a solar power generation device is attached to the roof part (1 square meter) of the car, the car will run. It can be said that it is difficult to secure sufficient power. In other words, how many power generation devices (power generation units) can be installed in the same area. For example, if you imagine a bellows fold, you can understand that the area of the power generation device (power generation unit) is larger in the latter case when it is arranged horizontally and when it is arranged in a bellows shape. I understand. The sharper the tilt angle of the bellows, the larger the placement area. The problem that occurs when this method is used is that each power generation device (power generation unit) can obtain a high power generation effect with respect to the light directly received in front of the light source, but diagonally. It means that the light received from can only generate a weak amount of electricity. Therefore, as a means for receiving light at an angle close to the front of each power generation device (power generation unit) arranged at an inclination angle, indirect light refracted by a prism or the like is used for each power generation device. It means to irradiate from the front of (power generation part).</p>
Next, an embodiment of the present invention will be described with reference to examples. Figure 1 is a front and side view of a solar power generation device, 1. The side of the solar power generation unit is 2. The front of the solar power generation unit is seen from the side, and 3. It is attached to the pedestal. It consists of appearances, and each power generation unit has positive and negative electrodes.
FIG. 2 is an example of the product of the present invention, and a plurality of each solar power generation device is arranged like a bellows as described in FIG. Also, in the upper part, 6. lenses with integrated surface lens part and 5. prism part are adjacent to the upper part of 8. solar power generation part side surface. 7. The side surface of the pedestal is fixed to the side surface of the 8. solar power generation unit, and maintains this bellows shape. Next, the light that has entered the invention product arranged as described above is increased in intensity by 4. at the surface lens portion along the arrow. Furthermore, in the 5. prism section, the refracted light travels toward the front of the side surface of the 8. solar power generation section.
Effect of the invention
INDUSTRIAL APPLICABILITY According to the present invention, it is possible to introduce the product in a place where it has been considered difficult to install or because the area that can be secured is small.
The apparatus of the present invention can easily and more power can be secured even in a narrow space and in a place where light cannot be directly secured.
<figref num="1"> It is a front view and a side view of a solar power generation device.</figref><figref num="2"> It is sectional drawing of the product of this invention.</figref>
Code description
1 Side of solar power generation part 2 Front of solar power generation part 3 Pedestal 4 Direction of light travel 5 Prism part 6 Surface lens part 7 Side of pedestal 8 Side of solar power generation part
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| JP2012195516A | Cited by | Japan | Examiner |
| US8907207B2 | Cited by | United States of America | Applicant |
| CN102683596A | Cited by | China | Search report |
| JP2019110739A | Cited by | Japan | Search report |
| KR20160022662A | Cited by | Republic of Korea | Search report |
2 priority claims, no other members on record
Priority claims2
| Document | Office | Kind | Date |
|---|---|---|---|
| 2004136853 | Japan | A | |
| JP20040136853 | – | – | – |
Numbers
- Publication
- 2005294787
- Publication, DOCDB
- 2005294787
- Publication, EPODOC
- JP2005294787
- Application
- 136853
- Application, DOCDB
- 2004136853
- Application, EPODOC
- JP20040136853
Titles2
- Japanese
- ソーラー発電装置
- English
- Solar power generator
Classification
- CPC, 1
- Y02E10/52
- IPC, 1
- H01L31 042