Irrigation and Melioration


The article discusses the physical and technical features of the experimental results of studying the parameters of an autonomous photovoltaic station (AFES) with a power of 2600 W designed and manufactured on the basis of 16 photovoltaic batteries made of polycrystalline silicon with an efficiency of 15.6 %. It is shown that an autonomous photovoltaic efficiently and reliably provides electric energy a lighting system for car parking in the winter season (January and February) and it is planned to lift water from a well with a depth of 70-80 m for irrigation and maintenance of the Heliopoligon from April 2020. The causes of the identified energy losses of solar radiation and electric energy are analyzed for further optimization of the APEC parameters

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M.N. Tursunov, R.А. Muminov, U.Kh. Gaziev, Z.S. Settarova and O.F. Tukfatullin, “Nauchnye i tekhnologicheskie aspekty razrabotki fotoehlektricheskoj ustanovki dlya raboty v usloviyakh zharkogo klimata” [Scientific and technological aspects of the development of a photovoltaic installation for operation in hot climates], Geliotekhnika. No. 3, Pp. 13-17, Tashkent 2006. (in Russian).

M.N. Tursunov, А.M. Mirzabaev, S. Dadamukhamedov, V.P. Kanonerov, E. Аbdullaev, and O.F. Tukfatullin, “Fotoehlektricheskaya ustanovka ulichnogo osveshheniya na osnove kremnievykh solnechnykh ehlementov” [Photovoltaic installation of street lighting based on silicon solar cells], Geliotekhnika, No. 1, Pp. 26-30, Tashkent 2009 (in Russian).

T.T.Riskiev, M.N.Tursunov, T. Аbdullaev “Fotoehlektricheskie stantsii, integrirovannye v dejstvuyushhuyu set' ehlektrosnabzheniya” [Photovoltaic plants integrated into the existing power supply network] Problemy ehnergo-resursosberezheniya, Tashkent 2015, No. 1-2, Pp. 187-193. (in Russian)

M.N. Tursunov, V.G. Dyskin, I.A Yuldashev, Kh. Sabirov, Park Jeong Hwoan “A Creterion of Contamination of the Glass Surface of Photovoltaic Batteries” Applied Solar Energy, 2015 Vol. 51. No.2, Pp 163-164

Аlferov ZH.I., Аndreev V.M., Rumyantsev V.D. Tendentsii i perspektivy razvitiya solnechnozh fotoenergetiki [Trends and prospects for the development of solar photovoltaics]. FTP, 2004. No.38. Pp. 937-947. (in Russian)

Аnarbaev. А.I., Zakhidov R.А., Orlova N.I., Tadzhiev U.А. Razhonirovanie territorii Uzbekistana po kompleksu meteofaktorov, vliyayushhikh na ehffektivnost' raboty solnechnykh sistem goryachego vodosnabzheniya [Zoning of the territory of Uzbekistan by a complex of meteorological factors affecting the efficiency of solar hot water systems]. Geliotekhnika. Tashkent, 2008. No2. Pp. 62-73.(in Russian)

M.N. Tursunov, KH. Sabirov, I.А. YUldashev, S. Dadamukhamedov, “Osobennosti sozdaniya fotoelektricheskozh sistemy dlya pod`ema vody”, [Features of creating a photovoltaic system for lifting water] Ehkologicheskij vestnik No. 10, Pp. 27-29. 2012.

T.T. Riskiev, M.N. Tursunov, KH. Sabirov, I.А. Yuldashev, Аvtonomnaya fotoelektricheskaya sistema elektropitaniya teplits sel'skikh zhitele”, [Autonomous photovoltaic power supply system for rural greenhouses] Problemy ehnergo- resursosberezheniya, No.1-2, Pp. 25-31, Tashkent 2013.(in Russian)

Tursunov M.N., Yuldoshev I.А. Razrabotka fotoelektricheskikh batarezh, ustanovok effektivno rabotayushhikh v usloviyakh Tsentral'noj Аzii [Development of photovoltaic batteries, installations efficiently operating in Central Asia]. Tashkent, 2011. Spetsial'nyj vypusk. Pp.160-165. (in Russian)

M.N. Tursunov, V.G. Dyskin and I.А. Yuldashev, “Kriteri zagryazneniya poverkhnosti stekla fotoelektricheskozh batarei” [A criterion for the contamination of the glass surface of a photovoltaic battery], Geliotekhnika, No2, Pp. 82-84, Tashkent 2015. (in Russian)

V.G. Dyskin, M.N. Tursunov, EH.T. Аbdullaev, “Mobil'ny izmeritel'ny zond dlya monitoringa stepeni zagryazneniya stekla” [Mobile measuring probe for monitoring the degree of contamination of glass], Problemy ehnergo - i resursosberezheniya, No1-2, Pp. 4-6, 2016. (in Russian)

Patent № FAP 2015 0107 ot 15.03.2017 g., Fotoelektricheskaya ustanovka [Photovoltaic installation] Tursunov M.N., Sabirov KH., Yuldoshev I.А., Komolov I.M., Radzhapov B.S.

M.N. Tursunov, K.H. Sabirov, I.А. Yuldashev, B.M. Turdiev, I.M. Komolov, “Fototeplovye batarei raznozh konstruktsii, sravnitel'nyj analiz” [Photothermal batteries of different designs, comparative analysis], Geliotekhnika, No1, Pp. 26-29, Tashkent. 2017. (in Russian)

M.N. Tursunov., I.А. YUldoshev. Аvtonomnaya fotoelektricheskaya sistema pod"ema vody iz kolodtsev” [Autonomous photovoltaic system for lifting water from wells] Ekologicheskizh vestnik. Tashkent, 2011. No. 4-5. Pp. 52-54. (in Russian)

R.A. Muminov, M.N. Tursunov, X. Sabirov, U.Abdiev, B.A. Yuldoshov, Sh.N. Abilfayziev, “Study of the Parameters of a Photo of a Thermal Battery with a cell Polycarbonate Collector”, International Journal of Advanced Research in Science, Engineering and Technology, vol. 6, No. 12, Pр. 12018-12023, 2019.

M.N. Tursunov., R. A. Muminov., O. F. Tukfatullin., I. A. Yuldoshev., and E.T. Abdullaev Photothermal Electric Battery Based on Silicon Solar Cells Applied Solar Energy, Vol.47, No.1, Pp. 63-65, 2011.

M. N. Tursunov, R. A. Muminov, V. G. Dyskin, I. A. Yuldoshev. A mobile photothermal converter and its operating characteristics Applied Solar Energy January, Volume 49, Issue 1, Рр. 16-18. 2013.

Riskiev T.T, M.N Tursunov., KH. Sabirov., I.А. Yuldoshev., B.M. Turdiev. Аvtonomnaya fotoehlektricheskaya sistema elektropitaniya teplits sel'skikh zhitelezh [Autonomous photovoltaic power supply system for greenhouses of rural residents] Problemy ehnergo-resursosberezheniya. Tashkent, 2013. No.1-2. Pp. 128-133. (in Russian)

M.N Tursunov., S.Dadamukhamedov., I.А. Yuldoshev., KH. O. Sabirov., B.M. Turdiev. Osobennosti sozdaniya fotoelektricheskozh sistemy dlya pod"ema vody [Features of creating a photovoltaic system for lifting water] Ehkologicheskij vestnik. Tashkent, 2012. No.10. Pp. 27-29. (in Russian)

M.N. Tursunov, Sungjin Kim, Sobirov Kh.A, Yuldashev I.A, Turdiev B.M. Development of Installation on the base of Photo thermal Conversion and study its Properties International Workshop on Convergence pf Physical and material Engineering (IWCPME 2013), Chiang Mai University, Thailand 2013. Pр. 33-35.



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