EFFICIENCY OF USING A SOLAR CONCENTRATOR FOR BIOMASS HELIOPYROLYSIS
Keywords:
heliopyrolysis, concentrator, pyrolysis reactor, biomass, amount of heat, solar radiation, thermal efficiency, alternative fuel, temperature, time.Abstract
The article analyzes the efficiency of the solar concentrator for biomass heliopyrolysis and the saving of heat energy used for the specific needs of the device, as well as the thermal technical indicators of the device. The article also proposes a heliopyrolysis system with a solar concentrator to provide heat to the pyrolysis reactor. A temperature of 400-700 ℃ can be obtained as a result of the application of a solar concentrator to this type of pyrolysis device. As a result, it allows to reduce private energy consumption for the pyrolysis process by 30-35%. In this article, the goals of computational-theoretical research obtained in the process of heliopyrolysis are mainly directed to the approximate assessment of their thermal efficiency, taking into account the degree of optimization of thermal technical parameters.
References
Avezov RR, Vokhidov AU, Kuralov MA Principles of development of solar energy in the Republic of Uzbekistan.//Modern problems of renewable energy. A collection of materials of the republican scientific-practical conference. Opposite. March 18, 2018, 11-13 p.m.
Abdurakhmanov A., Kuchkarov AA, Holov Sh. R., Abdumuminov A. Calculation of optical-geometrical characteristics of parabolic-cylindrical mirror concentrating systems // European scientific review. 2017 . Vol. 2. P. 201-204.
Klychev Sh.I., Zakhidov RA, Bakhramov SA, Dudko Yu.A., Khudoikulov A.Ya., Klychev Z.Sh., and Khudoiberdiev IA Parameter optimization for paraboloid-cylinder-receiver system of thermal power plants // Applied Solar Energy. Applied Solar Energy. 2009. Vol. 45. No. 4. P. 281–284.
Uzakov G.N., Novik A.V., Davlonov X.A., Almardanov X.A., Chuliev S.E. Heat and Material Balance of Heliopyrolysis Device. ENERGETIKA. Proceedings of CIS higher education institutions and power engineering associations. 2023; 66(1):57-65. https://doi.org/10.21122/1029-7448-2023-66-1-57-65
Uzakov, G.N., Almardanov, X.A., Kodirov, I.N., Aliyarova, L.A. Studying the temperature regime of the heliopyrolysis device reactor. E3S Web of Conferences, 2023, 411, 01040 DOI: 10.1051/e3sconf/202341101040
X. Davlonov, Study on heat and material balance of heliopyrolysis device, AIP Conference Proceedings, 2686, 020023 (2022)
Almardanov, X. A., et al. "Application of solar concentrators to obtain alternative fuel through a heliopyrolysis device."Universum: Technical Sciences 3 (2021): 8-12.
Almardanov, H. and Chuliyev, S. 2022. Biomassadan geliopiroliz usulida yoqilg‘i olish tajriba qurilmasining parametrlarini asoslash. Innovatsion texnologiyalar. 1, 4 (Nov. 2022), 92–96.
Davlonov, X. A., X. A. Almardanov, and I. A. Khatamov. "A program for modeling and calculating the exergic balance of a heliopyrolysis device to obtain alternative fuels from biomass." No DGU 10337 (2021).
Almardanov, H. A. (2023). Calculation of the energy efficiency of the solar concentrator heliopyrolysis device. Educational Research in Universal Sciences, 2(12), 147–150.
Sh.B. Imomov, X.A. Alimardonov. Heat mode solar heating systems based on flat reflectors, sets on the north side of the building. Молодой ученый, 2015, 335-336 ст.
Davlonov X.A., Almardanov H.A., Toshboyev A.R., Umirov F.B. Method of Thermal Processing of Biomass With Heliopyrolysis Device. 2021, International Journal of Human Computing Studies, 3(2), 149-151.
Алмарданов Х.А., Хатамов И.А. Тураев З.Б., Юсупов Р.Э., Эшонқулов М.Н., Жовлиев С.М., Применение солнечных концентраторов для приема альтернативного топлива через устройство гелиопиролиза // Universum: технические науки. – 2021, Март. –№. 3(84). С. 8-11. https://7universum.com/ru/tech/archive/item/11381
Давлонов Х.А., Алмарданов Х.А., Гадоев С.А., Шаймарданов И.З. Исследование теплового режима процесса гелиопиролиза биомасса // Универсум: технические науки: электрон. научн. журн. 2021. 4(85) 5-8 ст. https://7universum.com/ru/tech/archive/item/11550
Узаков Г.Н., Новик А.В., Давлонов Х.А., Алмарданов Х.А., Чулиев С.Э. Тепловой и материальный баланс гелиопиролизного устройства. Энергетика. Известия высших учебных заведений и энергетических объединений СНГ. 2023;66(1):57-65. https://doi.org/10.21122/1029-7448-2023-66-1-57-65
Т.Я. Хамраев, Х.А. Алмарданов. Режим работы установок для получения биогаза из селскохозяйственных отходов. Молодой ученый. — 2020. — № 25 (315). — С. 49-52.
К.К. Рахимова, Х.А. Алмарданов, С.И. Хамраев, С.М. Шамуратова, А.Р. Тошбоев, Э.Э. Турдиев. Теплоснабжение и энергосбережение сельскохозяйственных сооружений с пассивной системой солнечного отопления. ГГТУ им. ПО Сухого, 2020, 242-245 ст.
Almardanov , X. (2023). Research of heat exchange processes in the reactor of the solar concentrator heliopyrolisis device. Muqobil Energetika, 2(01), 41–47.
Almardanov H.A., Uzakov G.N. 2023. Technical-Economic Justification Of The Efficiency Of Using The Heliopyrolisis Device In Heliothermic Processing Of Biomass. Eurasian Journal of Engineering and Technology. 23, (Oct. 2023), 6–11.
Allamuratovich, Davlonov X., et al. "Method of Thermal Processing of Biomass with Heliopyrolysis Device."International Journal of Human Computing Studies, vol. 3, no. 2, 2021, pp. 149-151, doi:10.31149/ijhcs.v3i2.1574.
Саматова Ш. Й. и др. Экономичные и энергосберегающие электрические приборы //Современные проблемы и перспективы развития агропромышленного комплекса. – 2021. – С. 117-120.
Almardanov , H. A. (2023). Calculation of the energy efficiency of the solar concentrator heliopyrolysis device. Educational Research in Universal Sciences, 2(12), 147–150.
Ғ.Н. Узаков, Ҳ.А. Алмарданов. Параболик қуёш концентраторли гелиопиролиз қурилмасининг иссиқлик-технологик режимини тадқиқ қилиш. International Conference “Fundamental and Applied Problems of Modern Physics”, October 19-21, 2023, 123-128 b.
G.N. Uzakov, X.A. Almardanov, I.N. Kodirov, L.A. Aliyarova. Modeling the heat balance of a solar concentrator heliopyrolysis device reactor. BIO Web Conf., 71 (2023) 01098. DOI: https://doi.org/10.1051/bioconf/20237101098
Almardanov, X. (2023). Study of the temperature regime of the heliopyrolisis device with a parabolic concentrator. Innovatsion Texnologiyalar, 51(03), 33–39.
Uzakov, G., Almardanov, H. (2023). Parabolik quyosh konsentratorli geliopiroliz qurilmasining texnik-iqtisodiy parametrlarini asoslash. Muqobil Energetika, 1(10), 50–56.
Almardanov H.A., Uzakov G.N. Technical-Economic Justification Of The Efficiency Of Using The Heliopyrolisis Device In Heliothermic Processing Of Biomass. Genius Repository. 23, (Oct. 2023), 6–11.
Almardanov , X. (2023). Research of heat exchange processes in the reactor of the solar concentrator heliopyrolisis device. Muqobil Energetika, 2(01), 41–47.