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GR1000813B - Pyrophotovoltaic system - Google Patents

Pyrophotovoltaic system

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Publication number
GR1000813B
GR1000813BGR910100255AGR910100255AGR1000813BGR 1000813 BGR1000813 BGR 1000813BGR 910100255 AGR910100255 AGR 910100255AGR 910100255 AGR910100255 AGR 910100255AGR 1000813 BGR1000813 BGR 1000813B
Authority
GR
Greece
Prior art keywords
production
electricity
radiation
well
special
Prior art date
Application number
GR910100255A
Other languages
Greek (el)
Inventor
Nikolaos Zeliotis
Original Assignee
Nikolaos Zeliotis
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Nikolaos ZeliotisfiledCriticalNikolaos Zeliotis
Publication of GR1000813BpublicationCriticalpatent/GR1000813B/en

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Abstract

Translated fromGreek

Με το προτεινόμενο συστημα επιτυγχάνεται η από χημική καύση παραγωγή Ηλεκτρικής Ενέργειας, η συμπαραγωγή Ηλεκτρικής Ενέργειας, η συμπαραγωγή Ηλεκτρικής Ενέργειας και Φωτισμού χωρίς κινούμενα μέρη με συγκριτικώς υψηλό βαθμό αποδόσεως και συγκριτικώς χαμηλό κόστος. Το σύστημα περιλαμβάνει έναν συνδυασμό παραγωγής ισχυρής ακτινοβολίας η οποία προσπίπτουσα σε βολταϊκά στοιχεία (σχ.1Α,5,7), (σχ. 2Β,6), (σχ.2Β,8), (σχ.3) δημιουργεί παραγωγή ηλεκτρισμού καθώς και συμπαραγωγή ηλεκτρισμού με θερμοηλεκτρικά στοιχεία, FUEL CELLS που δύνανται να εσωματωθούν στο σύστημα ως και συμπαραγωγή με συμβατικά ή νέα Μαγνητοϋδροδυναμικά MHD, Μαγνητοπλασματικά M.P.D. παραγωγής Ηλεκτρικής Ενέργειας (σχ.3). Η ακτινοβολία που δημιουργείται είναι ειδικού οπτικού φάσματος για να συντονίζεται με τους ενσωματωμένους τύπους διαφόρου συνθέσεως φωτοβολταϊκών στοιχείων. Η ακτινοβολία του συστήματος δημιουργείται από κεραμικό μανδύα (σχ.1Α,4), (σχ.3Α,6) ή κεραμική κυψέλη (σχ.2Α,4),(σχ.2Β,1) ειδικής συνθέσεως και μεγάλης επιφανείας μετά των οποίων έρχεται σε επαφή η φλόγα. Το σύστημα περιλαμβάνει συνδυασμούς μιγμάτων καύσεως αέρος (σχ.3Α,6), οξυγόνου (σχ.3Α,2) με κοινά ή ειδικά καύσιμα (σχ.3Α,1) μετά ή άνευ ουσιών που ιονίζονται (σχ.3Α,3,4) με σκοπό την δημιουργία της απαιτουμένης ακτινοβολίας. Το σύστημα επίσης δύναται να περιλαμβάνει τοποθετημένα σε επιλεγμένη απόσταση και καταλλήλως διατεταγμένα φακούς Fresnel (σx.1A,6), (σx.2B,7), (σx.3A,13), κατοπτρικές επιφάνειες (σχ.2Α,2), (σχ.2Α,4), (σχ.2Β,4,5),(σχ.3) οπτικά φίλτρα, διαχωριστάς οπτικού φάσματος (σχ.2Α,5),(σχ.2Β,6), για την αύξηση του βαθμού αποδόσεως, μείωση του κόστους ως και δια την συμπαραγωγή Ηλεκτρικής Ενέργειας, Φωτισμού. ωThe proposed system achieves the production of Electricity from chemical combustion, the co-production of Electricity, the co-production of Electricity and Lighting without moving parts with a comparatively high degree of efficiency and a comparatively low cost. The system includes a combination of strong radiation production which incident on voltaic elements (fig. 1A, 5, 7), (fig. 2B, 6), (fig. 2B, 8), (fig. 3) creates electricity production as well as co-production of electricity with thermoelectric elements, FUEL CELLS that can be incorporated into the system as well as co-production with conventional or new MHD Magnetohydrodynamics, M.P.D. Magnetoplasmics. of Electricity production (fig. 3). The radiation created is of a special optical spectrum to coordinate with the built-in types of different composition of photovoltaic cells. The radiation of the system is created by a ceramic mantle (fig. 1A, 4), (fig. 3A, 6) or a ceramic cell (fig. 2A, 4), (fig. 2B, 1) of special composition and large surface, after which comes in contact with the flame. The system includes combinations of combustion mixtures of air (fig. 3A, 6), oxygen (fig. 3A, 2) with common or special fuels (fig. 3A, 1) with or without ionizing substances (fig. 3A, 3, 4) in order to create the required radiation. The system can also include placed at a selected distance and suitably arranged Fresnel lenses (fig. 1A, 6), (fig. 2B, 7), (fig. 3A, 13), mirror surfaces (fig. 2A, 2), ( fig. 2A, 4), (fig. 2B, 4, 5), (fig. 3) optical filters, optical spectrum separators (fig. 2A, 5), (fig. 2B, 6), to increase the degree of efficiency , cost reduction as well as through the co-production of Electricity, Lighting. oh

GR910100255A1991-06-071991-06-07Pyrophotovoltaic systemGR1000813B (en)

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
GR911002551991-06-07

Publications (1)

Publication NumberPublication Date
GR1000813Btrue GR1000813B (en)1993-01-25

Family

ID=10940722

Family Applications (1)

Application NumberTitlePriority DateFiling Date
GR910100255AGR1000813B (en)1991-06-071991-06-07Pyrophotovoltaic system

Country Status (1)

CountryLink
GR (1)GR1000813B (en)

Citations (11)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3751303A (en)*1971-06-031973-08-07Us ArmyEnergy conversion system
FR2354243A1 (en)*1976-06-101978-01-06Doellner Oscar SOURCE OF ELECTRICAL SUPPLY FROM RADIANT ENERGY FOR AIRPLANES AND MISSILES
EP0139434A2 (en)*1983-09-021985-05-02White Consolidated Industries, Inc.Thermophotovoltaic technology
US4528417A (en)*1984-02-151985-07-09The United States Of America As Represented By The Administrator Of The National Aeronautics And Space AdministrationThermionic-photovoltaic energy converter
JPS60148174A (en)*1984-01-121985-08-05Seikosha Co Ltd colored solar cells
US4700013A (en)*1985-08-191987-10-13Soule David EHybrid solar energy generating system
US4710588A (en)*1986-10-061987-12-01Hughes Aircraft CompanyCombined photovoltaic-thermoelectric solar cell and solar cell array
US4776895A (en)*1987-06-021988-10-11Quantum Group, Inc.Multiband emitter matched to multilayer photovoltaic collector
DE3833697A1 (en)*1988-10-041990-04-05Graf PaulSolar current through a gas or oil heating burner, as well as electrical illumination devices
DE3835279A1 (en)*1988-10-151990-04-19Willi SchickedanzEnergy source having a photovoltaic element
FR2650876A1 (en)*1989-08-141991-02-15Witzig PatrickLiquefied-gas lighter (burner, candle) whose gas cartridge contains a flexible reserve of alcohol + salts colouring the flame, in order to colour this flame by atomisation

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3751303A (en)*1971-06-031973-08-07Us ArmyEnergy conversion system
FR2354243A1 (en)*1976-06-101978-01-06Doellner Oscar SOURCE OF ELECTRICAL SUPPLY FROM RADIANT ENERGY FOR AIRPLANES AND MISSILES
EP0139434A2 (en)*1983-09-021985-05-02White Consolidated Industries, Inc.Thermophotovoltaic technology
JPS60148174A (en)*1984-01-121985-08-05Seikosha Co Ltd colored solar cells
US4528417A (en)*1984-02-151985-07-09The United States Of America As Represented By The Administrator Of The National Aeronautics And Space AdministrationThermionic-photovoltaic energy converter
US4700013A (en)*1985-08-191987-10-13Soule David EHybrid solar energy generating system
US4710588A (en)*1986-10-061987-12-01Hughes Aircraft CompanyCombined photovoltaic-thermoelectric solar cell and solar cell array
US4776895A (en)*1987-06-021988-10-11Quantum Group, Inc.Multiband emitter matched to multilayer photovoltaic collector
DE3833697A1 (en)*1988-10-041990-04-05Graf PaulSolar current through a gas or oil heating burner, as well as electrical illumination devices
DE3835279A1 (en)*1988-10-151990-04-19Willi SchickedanzEnergy source having a photovoltaic element
FR2650876A1 (en)*1989-08-141991-02-15Witzig PatrickLiquefied-gas lighter (burner, candle) whose gas cartridge contains a flexible reserve of alcohol + salts colouring the flame, in order to colour this flame by atomisation

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
CLAIMS SEARCHED: ALL*
PATENT ABSTRACTS OF JAPAN, vol. 9, no. 315 (E-365), 11th December 1985; & JP-A-60 148 174 (SEIKOUSHIYU) 05-08-1985*

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