About the authors
First name, Middle name, Last name, Scientific degree, Scientific rank, Current position. Full and brief name of the organization, The organization address. | Valery N. Kupriyanov, doctor oftechnical sciences, professor, corresponding member of the RAACS, Kazan State University of Architecture and Engineering, Kazan, Russian Federation Email: This e-mail address is being protected from spambots. You need JavaScript enabled to view it |
Title of the article | Increment of air temperature in the room under the influence of solar radiation through the light aperture |
Abstract. | Problem statement. Large areas of light openings in modern buildings and translucent facade systems lead to excessive solar radiation entering the premises of buildings and, as a result, to overheating of the premises. Regulatory documents on the sun protection of buildings provide for a reduction in the intake of solar radiation, but the temperature regime in the irradiated rooms remains uncontrolled, due to the lack of methods for assessing and regulating the temperature regime. Well-known studies consider only certain aspects of sun protection. In this regard, the development of a method for determining the increment of air temperature in irradiated rooms, which would take into account all the variety of factors affecting sun protection is very relevant. Results. The article describes the developed method, provides a numerical example of calculation and shows that the main factors affecting the increment of air temperature in irradiated rooms are the amount of solar energy received in the premises. The developed method will allow to improve the system of sun protection of buildings during their design. |
Keywords. | solar radiation; solar factor; temperature; parameters of irradiated premises; heat absorption; heat absorption of enclosing structures; |
For citations: | Kupriyanov V.N. Increment of air temperature in the room under the influence of solar radiation through the light aperture // News KSUAE 2022, № 4(62), p.6-17, DOI: 10.52409/20731523_2022_4_6, EDN: UIXOZF |