Abstract: The solar panel is considered to be the best way of absorbing the heating energy and converting it into the electrical energy. This is used widely has a good renewable energy comparing to other energy renewable energy. This system has some issues in it like losses due to heat and light reflection. These two issues contribute more on efficiency related problem. So, this is taken into consideration and arranged the arrays of solar panel and provided good cooling effect naturally to increase the efficiency.
STRUCTURED PYRAMID WITH EFFECTIVE COOLING SOLAR PANEL TITLE OF THE INVENTION: -
Structured pyramid with effective cooling solar panel
FIELD OF THE INVENTION:-
The present invention relates to the field of solar panel, particularly relates to the photovoltaic (PV) cell arrangement and effective natural cooling method for solar panel.
PRIOR ART:-
1. WO 2016098107 A3, titled "System for enhancing solar panel efficiency and methods of using same", the published PCT, describes about the heat removal mechanism is sophisticated and costlier method.
wherein the present invention is simpler and effective method to increase the efficiency of the solar panel
OBJECTS OF THE INVENTION:-
The main objects of the present invention is to provide the efficient method of arranging the photovoltaic cells. The further objects is to be effective cooling method.
SUMMARY OF THE INVENTION:-
The major constrain in the existing solar panel is low efficiency in power production. The present invention focus on the efficiency improvement based the photovoltaic cell arrangement and effective cooling method. The PV is arranged in the manner of pyramid structure to increase the efficiency of the solar panel also the water bath placed beneath this arrangement, which leads to effective natural heat transfer. The PV is placed in the angled manner to hit the direct sun rays also provide space of more internal reflection of the rays entered into the pyramid shape. The arrangement has PV cell internally as well as externally. So, even the reflected rays also produce the electrical energy and loss due to the heating can be minimised by this method.
BRIEF DESICRPTION OF DRAWING: -
Figure - 1: is the schematic view of the structured pyramid with effective cooling solar panel.
DETAILED DESCRIPTION: -
The photovoltaic cell is the basic principle in power generation. The solar panel has some losses through light reflection and heat. This is found to be the addressing need in the today's world. The efficiency of the panel can be increased by the reducing the losses in the panel. This can be minimised easily by the PV cell arrangement.
The arrangement shown in the figure - 1 is like the pyramid shape arrangement with effective cooling mechanism. This gives additional effective in terms of power generation by utilising the light rays to the maximum, achieve by arranging internal side (2) panel and external side (1) and the heating effective is controlled by the normal natural radiation by placing the water bath (3) and the arrangement provide additional room to remove the heat.
CLAIMS:-
We claim,.
1. A structure pyramid with effective cooling solar panel comprises of,
A external PV (1);
A internal PV(2);and A water bath (3),
wherein the external PV (1) and internal PV (2) arranged in pyramid shape and also with the water bath (3) placed beneath to produce more electrical energy.
2. A solar panel as claimed in claim 1, wherein efficiency increased with effective absorption of light energy.
3. A solar panel as claimed in preceding claims, wherein the water bath (3) supports in taking more heat produced with this pyramid arrangement.
| # | Name | Date |
|---|---|---|
| 1 | Form9_Earlier Publication_23-12-2016.pdf | 2016-12-23 |
| 2 | Form2 Title Page_Complete_23-12-2016..pdf | 2016-12-23 |
| 3 | Form1_As Filed_23-12-2016.pdf | 2016-12-23 |
| 4 | Form18_Normal Request_23-12-2016.pdf | 2016-12-23 |
| 5 | Drawings_As Filed_23-12-2016..pdf | 2016-12-23 |
| 6 | Description Complete_As Filed_23-12-2016..pdf | 2016-12-23 |
| 7 | Claims_As Filed_23-12-2016..pdf | 2016-12-23 |
| 8 | Abstract_As Filed_23-12-2016..pdf | 2016-12-23 |
| 9 | 201641044025-FER.pdf | 2019-09-11 |
| 10 | 201641044025-AbandonedLetter.pdf | 2020-03-13 |
| 1 | 201641044025search_11-09-2019.pdf |