À propos de cet article

Citez

[1] Baranov, V. “Technological support of energy efficiency in the bakery industry”, Kyiv. UNIDO 72, 2015.Search in Google Scholar

[2] Kouemou Hatou, C. F., Tchuen, G., Woafo, P. “Modeling, simulation and optimization of solid fuel bread ovens commonly used in developing countries”, Heliyon 7 (3), pp. 1 – 8, 2021.Search in Google Scholar

[3] Kovalev, O. V., Nikolaev, I. M., Fedorov, V. M. “Establishment of optimal operating modes of baking ovens”, Odesa National Academy of Food Technologies Scientific works 3 (45), pp. 61 – 65, 2014.Search in Google Scholar

[4] Suvolapov, V., Novitskiy, A., Khmelevski, V., Bustruy, O. “Investigation of the heat transfer process in internal combustion engine cylinders”, Central Ukrainian scientific bulletin. Technical Sciences 3 (34), pp. 266 – 274, 2020.Search in Google Scholar

[5] “Energy capacity of Ukraine is 3-4 times higher than of the EU”. Retrieved from https://www.consilium.europa.eu/en/policies/eu-response-ukraine-invasion/#group-section-Five-guiding-principles-raHaVQon5T, 2016.Search in Google Scholar

[6] Stadnyk, I. Ya., Matenchuk, L. Yu., Novak, L. L., Golovkina, L. I. “Areas of reliability of the mini-bakery on a mobile platform”, Works of TSATU 21(1), pp. 125 – 133, 2021.Search in Google Scholar

[7] Kapustenko, P., Kukulka, D., Arsenyeva, O. “Intensification of heat transfer processes”, Chemical Engineering Transactions 45, pp. 1729 – 1734, 2015.Search in Google Scholar

[8] Gorbiychuk, M. I., Kogutyak, M. I., Garasimov, V. M. “Mathematical model of a heater with an intermediate heat carrier”, Quality control methods and devices 2 (47), pp. 83 – 95, 2021.Search in Google Scholar

[9] Woolley, E., Luo, Yang, Simeone, A. “Industrial waste heat recovery: A systematic approach”, Sustainable Energy Technologies and Assessments 29, pp. 50 – 59, 2018.Search in Google Scholar

[10] Hongsheng, Z., Hongbin, Z., Zhenlin, L. “Waste heat recovery and water-saving modification for a water-cooled gas-steam combined cyclecogen erationsy system with absorption heat pump”, Energy Conversion and Management 180, pp. 1129 – 1138, 2019.Search in Google Scholar

[11] Korchemny, M., Fedoreiko, V., Shcherban, V. “Energy saving in the agro-industrial complex”, Ternopil: Textbooks, manuals 974, 2001.Search in Google Scholar

[12] Semko, V., Yurin, О., Маhas, N., Norka, A., Pylypenko, Y. “Selection of the external wall rounding angle optimal radius”, Collection of Scientific Works of Ukrduzt 196, pp. 69 – 76, 2021.Search in Google Scholar

[13] Stadnyk, I., Sokolenko, A., Piddubnuy, V., Vasylkivsky, K., Chahaida, A., Fedoriv, V. “Justification of thermodynamic efficiency of the new air heat pump in the system of redistribution of energy resources at the enterprise”, Potravinarstvo Slovak Journal of Food Sciences 15, pp. 680 – 693, 2021.Search in Google Scholar

[14] Dai, L. H., Shang, Y., Li, X. L., Li S. F. “Analysis on the transient heat transfer process inside and outside the borehole for a vertical U-tube ground heat exchanger under short-term heat storage”, Renewable Energy 87 (3), pp. 1121 – 1129, 2016.Search in Google Scholar

[15] Bosyi, M. V. “Heat pump for heat supply and hot supply of agricultural enterprises”, Bulletin of Sumy National Agrarian University. The Series: Mechanization and Automation of Production Processes 2 (48), pp. 3 – 8, 2022.Search in Google Scholar

[16] Aulin, V., Bosiy, M., Kropivnyi, V., Kuzyk, O., Kropivna, A. “Mathematical modeling of heat exchange processes when heating metal in a furnace”, Scientific Journal of the Ternopil National Technical University 4 (104), pp. 123 – 129, 2021.Search in Google Scholar

[17] Gužela Š., Dzianik F. “The Recuperative Heat Exchangers – The Mean Temperature Difference in the Special Cases of Heat Transfer”, Strojnícky časopis – Journal of Mechanical Engineering 70 (1), pp. 47 – 56, 2020.Search in Google Scholar

[18] Gužela Š., Dzianik F. “Countercurrent Index Determination for the Recuperative Heat Exchangers”, Strojnícky časopis – Journal of Mechanical Engineering 71(1), pp. 51 – 60, 2021.Search in Google Scholar

[19] Gromova, O. M., Getman, O. L., Markova, T. D. “Heat pump power engineering in environmentalizing the fuel and energy complex in Ukraine: perspectives of development and management mechanisms”, Odessa: IPREED NAN Ukraine, 2013.Search in Google Scholar

[20] Boyle, R., Greenwood, Ch., Hohler, A., Liebreich, M., Sonntag-O`Brien, V., Tyne, A., Usher, E. “Global trends in sustainable energy investment 2008. Analysis of trends and issues in the financing of renewable energy and energy efficiency”, Retrieved from https://wedocs.unep.org/handle/20.500.11822/8821, 2008.Search in Google Scholar

[21] Stadnyk, I., Pankiv, J., Havrylko, Р., Karpyk, H. “Researching of the concentration distribution of soluble layers when mixed in the weight condition”, Potravinarstvo Slovak Journal of Food Sciences 13 (1), pp. 581 – 592, 2019.Search in Google Scholar

[22] Svitliy, Yu. G., Biletsky, V. S. “Hydraulic transport”, Donetsk: Eastern Publishing House, Donetsk branch of NTSh, “Edition of the Mining Encyclopedia”, Ukraine, 2009. ISBN 978-966-317-038-1Search in Google Scholar

[23] Freeman, L., Ryan, A., Kensler, J., Vining, G. „A tutorial on the planning of experiments”, Quality Engineering, 25 (4), pp. 315 – 332, 2013.Search in Google Scholar

[24] Borysova, A. S. “Improving the calculation method for forecasting the spread of fire to neigh boring objects, taking in to account the impact of wind”, Dissertation of the Doctor of Philosophy, Lviv State University Of Life Safety, 2021.Search in Google Scholar

[25] Banja, M., Oppelt, D., Anashkin, S., Khomenko, O. “Market study on mitigation potential for heat pump and commercial refrigeration equipment in Ukraine”, HEAT GmbH, Königstein, Germany, 2020.Search in Google Scholar

[26] Kosmadakis, G. “Estimating the potential of industrial (high-temperature) heat pumps for exploiting waste heat in EU industries”, Applied Thermal Engineering 156 (25), pp. 287 – 298, 2019.Search in Google Scholar

[27] Xu, Z.Y., Wang, R.Z., Yang, Chun. “Perspectives for low-temperature waste heat recovery”, Energy 176(1), pp. 1037 – 1043, 2019.Search in Google Scholar

eISSN:
2450-5471
Langue:
Anglais