THE METHOD OF CALCULATING THE OPTIMUM SHAPE OF THE DISTRIBUTION OF SOLAR RADIATION POWER DENSITY FOR THE UNIFORM EXCITATION OF THE ACTIVE ELEMENTS OF LASERS PREDETERMINED SHAPE
( Pp. 135-142)
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Razhapov Lutfulla
mladshiy nauchnyy sotrudnik
Institute of Materials, Scientific and Production Association «Physics-Sun» of the Academy of Sciences of the Republic of Uzbekistan Sobirov Yuldash Begzhanovich kandidat tehnicheskih nauk; starshiy nauchnyy sotrudnik
Institute of Materials Science «Physics-Sun» of Uzbekistan Academy of Sciences, Uzbekistan Fazilov Abdukhakim kandidat fizika-matematicheskih nauk, starshiy nauchnyy sotrudnik
Institute of Materials, Scientific and Production Association «Physics-Sun» of the Academy of Sciences of the Republic of Uzbekistan Rakhimov Rustam Kh. Dr. Sci. (Eng.); Head, Laboratory No. 1; Institute of Materials Science of the Academy of Sciences of the Republic of Uzbekistan; Institute of Renewable Energy Sources; Tashkent, Republic of Uzbekistan
Институт материаловедения Академии наук Республики Узбекистан
г. Ташкент, Республика Узбекистан
Institute of Materials, Scientific and Production Association «Physics-Sun» of the Academy of Sciences of the Republic of Uzbekistan Sobirov Yuldash Begzhanovich kandidat tehnicheskih nauk; starshiy nauchnyy sotrudnik
Institute of Materials Science «Physics-Sun» of Uzbekistan Academy of Sciences, Uzbekistan Fazilov Abdukhakim kandidat fizika-matematicheskih nauk, starshiy nauchnyy sotrudnik
Institute of Materials, Scientific and Production Association «Physics-Sun» of the Academy of Sciences of the Republic of Uzbekistan Rakhimov Rustam Kh. Dr. Sci. (Eng.); Head, Laboratory No. 1; Institute of Materials Science of the Academy of Sciences of the Republic of Uzbekistan; Institute of Renewable Energy Sources; Tashkent, Republic of Uzbekistan
Институт материаловедения Академии наук Республики Узбекистан
г. Ташкент, Республика Узбекистан
Abstract:
In this paper we consider the possibility of forming П-shaped irradiance at the focal plane in the heliostat - parabolic mirror concentration systems (HPMCS) for based on the received intensity distribution pattern of the laser pumping at near focus region HPMCS.
How to Cite:
Razhapov L.., Sobirov Y.B., Fazilov A.., Rakhimov R.K., (2017), THE METHOD OF CALCULATING THE OPTIMUM SHAPE OF THE DISTRIBUTION OF SOLAR RADIATION POWER DENSITY FOR THE UNIFORM EXCITATION OF THE ACTIVE ELEMENTS OF LASERS PREDETERMINED SHAPE. Computational Nanotechnology, 1 => 135-142.
Reference list:
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Sh. Payziev, S. Bakhramov, Sh. Klichev, A. Kasimov, T. Riskiev, A. Abdurakhmahov, A. Fazilov. Big Solar Furnace as pumping source for high power lasers. Proceedings of spie. Solid State Lasers XVII: Technology and Devices. San Jose, USA,2008, Vol. 6871, p. 68712E-1.
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V. A. Grilikhes, R. A. Zakhidov. K vyvodu formuly raspredeleniya obluchennosti v fokal noy ploskosti paraboloidnykh geliokontsentratorov. // Geliotekhnika. 1971. №4.
P. ZHoze. Raspredelenie plotnosti potoka energii v fokal nom izobrazhenii solnechnoy pechi. v sb. Solnechnye vysokotemperaturnye pechi M.: IL 1960. S.229-238.
S. A. Azimov, R. YU. Akbarov, I. I. Pirmatov. Raschet kharakteristik solnechnykh energeticheskikh ustanovok. // Geliotekhnika. 1982. №3.
R. A. Zakhidov, A. A. Vayner. Raspredelenie luchistogo vektora v pole izlucheniya paraboloidnogo kontsentratora. // Geliotekhnika. 1974. №3.
R. A. Zakhidov. Zerkal nye sistemy kontsentratsii luchistoy energii. Tashkent, Fan , 1986.
G. Korn, T. Korn. Spravochnik po matematike. M., Nauka , 1978.
Sh. Payziev, S. Bakhramov, Sh. Klichev, A. Kasimov, T. Riskiev, A. Abdurakhmahov, A. Fazilov. Big Solar Furnace as pumping source for high power lasers. Proceedings of spie. Solid State Lasers XVII: Technology and Devices. San Jose, USA,2008, Vol. 6871, p. 68712E-1.
A. Fazilov, M. M. Mansurov, A. A. Abdurakhmanov. Raschetnye kharakteristiki tverdotel nogo lazera s solnechnoy nakachkoy. // Geliotekhnika, 2010, №3.
Alimov S. A., Mallaeva KH. M., Pirmatov I. I., Riskiev T. T., Suleymanov S. KH. // Geliotekhnika. 1979. №2.
R. YU. Akbarov, I. I. Pirmatov, T. T. Riskiev. Regulirovanie raspredeleniya plotnosti energii v fokal noy zone Bol shoy Solnechnoy Pechi.// Geliotekhnika. 1998. №1.
I.G. Atabaev, ZH.S. Akhatov, E. Mukhamediev, ZH. Ziyevaddinov. Struktura avtomatizirovannoy sistemy upravleniya geliopolem Bol shoy Solnechnoy Pechi. Fundamental nye i prikladnye voprosi fiziki. Sbornik tezisov dokladov mezhdunarodnoy konferentsii. Tashkent-2015 g.
I.G. Atabaev, ZH.S. Akhatov, E. Mukhamediev, ZH. Ziyevaddinov. Osnovnye funktsional nye uzly kontrollera geliostata Bol shoy Solnechnoy Pechi. Fundamental nye i prikladnye voprosi fiziki. Sbornik tezisov dokladov mezhdunarodnoy konferentsii. Tashkent-2015 g.
V. A. Grilikhes, R. A. Zakhidov. K vyvodu formuly raspredeleniya obluchennosti v fokal noy ploskosti paraboloidnykh geliokontsentratorov. // Geliotekhnika. 1971. №4.
P. ZHoze. Raspredelenie plotnosti potoka energii v fokal nom izobrazhenii solnechnoy pechi. v sb. Solnechnye vysokotemperaturnye pechi M.: IL 1960. S.229-238.
S. A. Azimov, R. YU. Akbarov, I. I. Pirmatov. Raschet kharakteristik solnechnykh energeticheskikh ustanovok. // Geliotekhnika. 1982. №3.
R. A. Zakhidov, A. A. Vayner. Raspredelenie luchistogo vektora v pole izlucheniya paraboloidnogo kontsentratora. // Geliotekhnika. 1974. №3.
R. A. Zakhidov. Zerkal nye sistemy kontsentratsii luchistoy energii. Tashkent, Fan , 1986.
G. Korn, T. Korn. Spravochnik po matematike. M., Nauka , 1978.
Keywords:
the heliostat, hub, a big solar oven, the pumping laser, focal spot.
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