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Publications of Podkovyrina Kseniya Alekseevna
Architecture and design, 2018-1
Podkovyrina K.A., Podkovyrin V.S. - Translucent enclosing structures (heat loss reduction methods and global experience in application) pp. 46-51

DOI:
10.7256/2585-7789.2018.1.27981

Abstract: Building construction in the regions with severe climatic conditions must pay considerable attention to the questions of heat preservation and minimization of heat loss through the external enclosing structures. The article analyzes the main sources heat leakage through translucent enclosing structures and determines that the best course of action is to reduce heat loss via window structure through the use of an effective glass unit. There are three main ways to increase the reduced resistance to heat transfer of a glass unit. Reducing methods of heat transfer, which occurs by convection and radiation, are discussed in detail. The reasons for the emergence of the need to use energy-efficient technologies, as well as global experience in the development and use energy-efficient double-glazed windows are given. The climatic conditions of populated areas of Siberia are compared with the climatic conditions of populated areas of Canada and it is established that the cold in Canadian and Russian territories is almost the same, but their north is deserted, the population is concentrated on the southern border. Thus, populated areas of Siberia have more severe climatic conditions, which is one of the factors that it is necessary not just to learn from foreign experience in using energy-efficient technologies, but to adapt them to more severe weather conditions.
Architecture and design, 2017-2
Podkovyrin V.S., Podkovyrina K.A. - Impact of the form of the outside corners upon the temperature for indoor surface of the building walls pp. 38-42

DOI:
10.7256/2585-7789.2017.2.25043

Abstract: In the construction practice, the most common angles in architectural morphogenesis are the right angles of outside building walls, but most recent projects utilize various forms of such outside corners. Within the internal structure of the external building corner the temperature distribution and the nature of the heat transfer differs from the surface of the wall, which makes it more vulnerable in sanitary maintenance and thermal protection. In the current construction norms and rules, for carrying out sanitary maintenance requirements the temperature of the indoor surface of the outside corners of the building should not be lower than the temperature of the condensation point of the indoor air. Violation of these requirements can lead to freezing of the corners, formation of condensate, and eventually mold and mildew. The article examines the special problem of changes to the temperature index on the indoor surface of the corner depending on its size and explores the forms of right angle corners. The author presents the results of experimental reading of temperature of the indoor surface of outside corners with 90 and 135-degree angles. The acquired data allowed comparing these angles from the position of sanitary maintenance.
Urban Studies, 2016-3
Podkovyrina K.A., Podkovyrin V.S. - Energy efficient translucent building envelope (the modern historiography) pp. 49-60

DOI:
10.7256/2310-8673.2016.3.19269

Abstract: The article provides an overview and analysis of research in the field of energy-efficient translucent walling, which results were published in the Russian literature over the last decade. The authors determine the relevant issues and promising directions of the research in this field. There is a significant amount of publications in the area of heat transfer and energy efficiency of the translucent constructs. This work reviews the articles published not earlier than 2008 and included into the database of the Russian index of scientific citations, as well as list of the journals recommended Higher Attestation Commission. The conducted overview of the literature allowed determining that the most attention is given to the translucent constructs with solar screens, as well as insulated glazing with low-emissivity glass. This direction is the most promising and relevant at the present stage. The analysis of the existing publications demonstrated that the articles do not examine the questions about the longevity of insulated glazing filled with inert gas, as well as there is lack of research in optimization of insulated glazing from the perspective of energy efficiency and economic purposefulness.
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