Light-converting device
20170070186 ยท 2017-03-09
Inventors
Cpc classification
F24S20/61
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02B10/20
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
Y02E10/50
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
Y02E10/40
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
H02S20/30
ELECTRICITY
International classification
Abstract
In the light-converting device the light-converting elements (11) are arranged at least on two levels. They are placed on the strips (17). The design is supported at least by one pole (23). Because of it in this device light-converting elements may be arranged on many levels and consequently much less place for it is required and new possibilities appear. The device may be installed for instance on a roof of buildings in the best direction at any side of inclined roof. The device may also be installed on slopes of mountains, in rivers, lakes, coastal zones of seas and oceans, on vehicles, and trailers. The device may be installed on ships standing immovably not very far from the coast and connected to the coast by a cable. The device may be used on military bases, and on the moon. The device is used on military bases will decrease dependence on the fuel supply.
Claims
1. A light-converting device, comprising: strips arranged horizontally one above the other at least on two levels, and having a front and a rear sides; light-converting elements placed inclined on said strips; and at least one pole on which said strips are placed and fixed.
2. The device of claim 1,wherein said light-converting elements have different inclinations.
3. The device of claim 1, wherein under of said strips protrudes forward of said strip placed over it.
4. The device of claim 1, wherein upper of said strips protrudes back of said strip placed below it.
5. The device of claim 4, wherein under of said strips protrudes forward of said strip placed over it.
6. A light-converting device, comprising: strips arranged horizontally one higher the other at least on two levels, and having a front and a rear edges, and are placed so that beginning with the second level said front edge of said strip are located between said front and said rear edges of said strip located on a level below; light-converting elements placed inclined on said strips; and at least one pole on which said strips are placed and fixed.
7. The device of claim 6, wherein said light-converting elements have different inclinations.
8. A light-converting device, comprising: strips arranged horizontally one higher the other at least on two levels, and having a front and a rear edges, and are placed so that beginning with the second level said front edge of said strip are located between said front and said rear edges of said strip located on a level below; light-converting elements placed inclined on said strips; at least one inclined beam on which said strips are placed and fixed; and at least one pole supporting said device.
9. The device of claim 8, wherein-said light-converting elements have different inclinations.
10. A light-converting device, comprising: strips arranged horizontally one higher the other at least on two levels, and having a front and a rear sides; light-converting elements placed inclined on said strips; at least one pole on which said strips are placed and fixed; and a device able to move on which said pole is placed and fixed.
11. The device of claim 10, wherein said light-converting elements have different inclinations.
12. A light-converting device, comprising: strips arranged horizontally one above the other at least on two levels, and having a front and a rear sides; light-converting elements placed inclined on said strips; a pole on which said strips are placed and fixed; and a turning device on which said pole is placed and fixed.
13. The device of claim 12, wherein said light-converting elements have different inclinations.
Description
DRAWINGSFIGURES
[0030] At all accompanying drawings the light-converting device is showed for the case of converting sunlight to electrical energy. Devices for converting sunlight to heat energy for heating water and air and for changing of sun rays direction can be made by analogy.
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
TABLE-US-00002 Drawings-Reference Numerals 11 light-converting elements 13 front side 15 rear side 17 strips 19 front edge of strips 21 rear edge of strips 23 pole 25 foundation 27 second level 29 front edge of light-converting elements 31 rear edge of light-converting 33 lower part of pole elements 35 upper part of pole 37 inclined beam
DETAILED DESCRIPTIONFIGS. 1 and 2FIRST EMBODIMENT
[0037] The principal embodiment of the light-converting device which is located on the ground is showed in
[0038] The means for supporting and fixing strips may be different. One of the simplest is showed in
[0039] The light-converting device may be installed differently with respect to the cardinal points. But the most advantageous installation is when the front edges of the light-converting elements are parallel to the West-East direction and the front side of the device is directed to the equator. This device may be installed on land, building roofs, slopes of mountains, along electrical rail roads, in rivers, lakes, coastal zones of seas and oceans, on vehicles, trailers and ships. When the device is installed on a ship a floating breakwater should be installed in front of it. And the device may be installed on street lighting posts, power transmission masts, and high palm trunks. The device may be used on military bases and on the moon.
[0040] The device with the single pole may be installed on a turning device which is installed and fixed on the foundation. In this case the light-converting device acquires the possibility to turn after the sun moving. Such the turning device has been widely known and used very long in the tower and truck cranes. The attachment of the light-converting device to the turning device may be done in the same way as a mast of the tower cranes is attached to its turning device.
[0041] The reference numerals on all figures are the same as on
[0042] Another embodiment of the invention is showed in
[0043] A front view of a big embodiment which has a large length and is supported by more than one pole is showed in
[0044] The device may be installed on vehicles, trailers, and ships. The devices installed on vehicles and trailers must be located so that the front side of the embodiment will be arranged perpendicularly to the axis of the vehicle or trailer wheels. The devices installed on ships must be located so that the front side of the embodiment will be parallel to the ship keel. These devices must stand immovably. The ships are connected to a coast by a cable. The light-converting devices installed on vehicles and ships have the possibility to turn after the sun moving.
[0045] In embodiments showed in
Operation
[0046] Under the sunlight action the device may: either produce current, or heat water, or heat air, or change the direction of sun rays.
[0047] The angle of the light-converting elements inclination renders a significant influence on the part of the day-time when the light-converting elements for producing electrical and heat energy give the most output. Therefore a definite combination of the light-converting elements with different inclinations permits to get energy from the sun in accordance with the demand for it.
[0048] Embodiments installed on turning devices, vehicles, trailers, and ships may turn after the sun moving under the control of an operator or a computer.
Advantages
[0049] From the description above a number of advantages of the showed embodiments of my Light-converting device become evident:
[0050] (a) The light-converting elements arranged at least on two levels permit to place a great quantity of them on a small plot. Therefore the device allows getting much energy with the small plot.
[0051] (b) The device may be placed on a roof of buildings in the best direction at any side of the inclined roof.
[0052] (c) The device may be placed on street lighting posts, power transmission masts, high palm trunks, slopes of mountains.
[0053] (d) The device may be placed along electrical rail roads.
[0054] (e) The device may be placed in rivers, lakes, coastal zones of seas and oceans.
[0055] (f) The device with a single pole may be placed on the turning device.
[0056] (g) The device may be placed on devices able to moveon vehicles, trailers, and ships.
[0057] (h) The device may be used on military bases, and on the moon.
Conclusion, Ramifications, and Scope
[0058] Accordingly, the reader will see that the light-converting device of the various embodiments creates many new possibilities for receiving energy from the sun with the maximum output. First of all the place for the device is required much less. Secondly the device being installed even on the inclined roof of buildings will be arranged in the best position. The device for instance having the light-converting elements arranged one over the other on 20 levels will produce energy 20 times more than known devices wherein the light-converting elements are arranged on one level. The device may be placed on street lighting posts, power transmission masts, high palm trunks, slopes of mountains. The device may be placed along electrical rail roads. The device may be placed in rivers, lakes, coastal zones of seas and oceans. The device with the single pole installed on the turning device may turn after the sun moving. The device may be installed on vehicles, trailers, and ships. The devices may be used on military bases, and on the moon. The device used on the military bases will decrease dependence on supplying of the fuel. The same may refer to different countries.
[0059] Although the description above contains much specificity, these should not be construed as limiting the scope of the embodiments but as merely providing illustration of some of several embodiments.
[0060] Thus the scope of the embodiments should be determined by the appended claims and their legal equivalents, rather than by examples given.