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Experimental determination of the efficiency of the solar collector integrated into the light transparent building facade


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[1] Shapoval S., Venhryn I. (2014) Prospects for using solar energy in Ukraine. Young scientist, 7(2), 21-24. (in Ukrainian)Search in Google Scholar

[2] Bockris J., Veziroglu T., Smith D. (2006) Solar hydrogen energy. The power to save the Earth. Macdonald Optima, London, 168. (in Ukrainian)Search in Google Scholar

[3] Shapoval S. (2016) The efficiency of combined solar collectors for energy efficient buildings. Budownictwo o Zoptymalizowanym Potencjale Energetycznym 2(18), 81-86. (in English)10.17512/bozpe.2016.2.12Search in Google Scholar

[4] Shapoval S. (2017) Economic efficiency of application of solar window. Czasopismo inzynierii ladowej, srodowiska i architektury journal of civil engineering, Environment and architecture, (2/II/17), 123-132. (in English)10.1515/sspjce-2017-0016Search in Google Scholar

[5] Lahutin O., Shmakov I., Nikulin Yu. (2008) Albedo of the underlying surface according to the MODIS/Terra Spectroradiometer. Sixth all-Russian open annual conference “ Modern problems of remote sensing of the Earth from space», 12. (in Russian)Search in Google Scholar

[6] Rekstad J., Meir M., Murtnes E., Dursun A. (2015) A comparison of the energy consumption in two passive houses, one with a solar heating system and one with an air–water heat pump. Energy and Buildings, 96, 149–161. (in English)10.1016/j.enbuild.2015.02.059Search in Google Scholar

[7] Kazakov H. (2009) Architecture of energy-saving solar houses. Lviv Polytechnic, 84. (in Ukrainian)Search in Google Scholar

[8] Kazakov H. (2012) Solar houses: typological classification. Bulletin of the National University “Lviv Polytechnic”, 728, 235-240. (in Ukrainian)Search in Google Scholar

[9] Shapoval, S., Zhelykh, V., Venhryn, I., Kozak, K., & Krygul, R. (2019). Theoretical and experimental analysis of solar enclosure as part of energy-efficient house. Eastern-European Journal of Enterprise Technologies, 2(8-98), 38-45. doi:10.15587/1729-4061.2019.160882 (in English)10.15587/1729-4061.2019.160882Search in Google Scholar

[10] Hromova U. (2012) Environmental problems as prerequisites for the development of energy-saving technologies. Poultry Market. (in Russian)Search in Google Scholar

[11] Pashchenko N. (2013) Energy-efficient and energy-saving policy of Poland. Reports of participants. Charitable foundation Havrylyshyna B., 8. (in Ukrainian)Search in Google Scholar

[12] Basok B., Fareniuk H. (2014) Conceptual foundations for creating an experimental passive-type house (with a total area of 300 square meters). Building construction, 81, 233-243. (in Ukrainian)Search in Google Scholar

[13] Basok B., Bozhko K., Bieliaieva T. (2014) Polyvalent heat supply system for an experimental house of passive type (300 m2) based on the use of renewable and alternative energy sources. Science and innovation. Institute of technical Thermophysics of the national Academy of Sciences of Ukraine, 6(10), 34-51. (in Ukrainian)10.15407/scine10.06.031Search in Google Scholar

[14] Dvoretskyi A. (2013) Design features of energy-efficient buildings in the South of Ukraine. Construction, Materials science, Engineering, 68, 125-129. (in Russian)Search in Google Scholar

[15] BP Statistical Review of World Energy 2019. (2019). Centre for Energy Economics Research and Policy, Heriot-Watt University, 61. (in English)Search in Google Scholar

[16] Serheichuk O. (2008) Geometric modeling of physical processes when optimizing the shape of energy-efficient houses (Doctoral dissertation), Kyiv, 425. (in Ukrainian)Search in Google Scholar

[17] Horobets V., Masiuk M. (2016) Development of a new design and mathematical modeling of heat and mass transfer processes for heat exchangers of ventilation systems of an energy-saving house. Energy and automation, 1, 90-98. (in Ukrainian)Search in Google Scholar

[18] Chulkov D. (2007). Patent of Ukraine 26650. Kyiv: State Patent Office of Ukraine. (in Ukrainian)Search in Google Scholar

[19] Shapoval, S. (2017). Patent of Ukraine 113688. Kyiv: State Patent Office of Ukraine. (in Ukrainian)Search in Google Scholar

[20] Shapoval, S., Zhelykh, V., Spodyniuk, N., Dzeryn, O., & Gulai, B. (2019). The effectiveness to use the distribution manifold in the construction of the solar wall for the conditions of circulation. Pollack Periodica, 14(2), 143-154.10.1556/606.2019.14.2.13Search in Google Scholar

[21] Lukáč, P., Horbaj, P. (2015) Some notes to design of heating and hot water supply system like a power of low-temperature heating utilization in combination with solar collectors in housing and municipal sphere. Cassotherm 2015. TU v Košiciach, 321-331. ISBN 978-80-553-2438-8.Search in Google Scholar

eISSN:
1338-7278
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Engineering, Introductions and Overviews, other