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Light & Engineering 26 (2)

Light & Engineering 26 (2)

Volume 26
Date of publication 07/01/2018
Pages 162-166

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Accounting of Climatic Features in Designing Solar Shading Devices . L&E 26 (2) 2018
Articles authors:
Alexander T. Dvoretsky, Alexander V. Spiridonov, Igor L. Shubin, Ksenia N. Klevets

Alexander T. Dvoretsky, Prof., Dr. of Technical Science, graduated from Donetsk Polytechnic Institute in 1971. At present, he is the head of the Chair “Geometric and Computer Modelling of Energy Efficient Buildings”of Academy of Civil Engineering and Architecture of the Crimean Federal University named after V.I. Vernadsky, counsellor of Russian Academy of Architecture

Alexander V. Spiridonov, Ph.D., graduated from MPEI in 1975 as specialist in light and engineering and sources of light. At present, he is a head of laboratory “Energy saving technologies in construction” NIISF RAASN, President of Association of Energy Effective Windows Manufacturers, Laureate of the Russian Federation Government prize in the field of science and technology

Igor L. Shubin, Prof., Dr. of Tech. Sc., graduated from University of Civil Engineering named after V.V. Kuibyshev in 1980. At present, he is Director of NIISF RAASN and counsellor in RAASN, RF Honoured Builder, Laureate of the Russian Federation Government Prize in the field of science and technology

Architecture-builder, graduated from the National Academy of Nature Protection and Resort Construction (Simferopol) in 2012 and in 2015 – post graduate. At present, she is an assistant of the department “Geometric and Computer Modelling of Energy Efficient Buildings” of the Academy of Civil Engineering and Architecture of the Crimean Federal University named after V.I. Vernadsky

Abstract
Zoning maps of the territory of the Russian Federation on solar radiation and outdoor temperature are given. It should provide for shading of fenestration during the cooling period of buildings, depending on the total amount of solar radiation and the temperature of the outside air. Depending on the amount of solar radiation, five zones are proposed in the territory of the Russian Federation. For each of the five zones, the cooling period of the building is proposed, on which the choice of the parameters of the solar ray daily cone depends on the shape of a solar shading device. A map of isolines of solar radiation for July in the North Caucasus and Southern Federal Districts of the Russian Federation is proposed, which can be used to calculate heat input through fenestration.
References
1. Draft Building Regulation “Solar shading devices of buildings. Design rules”, NIISF RAASN, 2016, 77 p.
2. W. Beck, D. Dolmans, G. Dutoo, A. Hall, O. Seppantn Solar Shading. How to integrate solar shading in sustainable buildings. REHVA and ES-SO Guidebook, 2010, 78 p.
3. M. Hutchins High performance dynamic shading solutions for energy efficiency and comfort in buildings. Sonnergy Limited, Sonnergy report 15/498, May 2015, 147 p.
4. Shteinberg А.Y. Solar protection of buildings / Edited by Podgorny A.L. Kiev.: Budivelnik, 1986, 104 p.
5. Dvoretsky А.Т., Morgunova М.А., Sergeichuk О.V., Spiridonov А.V. Methods of designing stationary solar shading devices// Svetotekhnika, № 6, 2016, pp. 43–47.
6. Sergeychuk O.V. Geometric computerized model “Atmospheric Radiation” for an Energy Efficient Building// Energy efficiency in architecture and construction/ Kiev/: KNUCA, 2011, Issue 1, pp. 22–28.
7. Dvoretsky А.Т., Spiridonov А.V. Morgunova М.А. Influence of the Russian Federation climate and the orientation of the building on the choice of the type of stationary solar shading devices. Biosphere compatibility: Human, Region, Technologies № 4 (16), 2016, pp.50–57.
8. Building Regulation ДСТУ Н Б В.1.1–27:2011 Building climatology (Ukraine).
9. Building Regulation СП 131.13330.2012. Building climatology (Russia).
10. Building Regulation СП 50.13330.2012 Thermal performance of buildings (Russia).
11. Building Regulation СП 52.13330.2011 Daylighting and artificial lighting (Russia)
12. Sanitary Requirements СанПиН2.2.1/2.1.1.1076–01 Sanitary and epidemiologic rules and standards. Hygienic requirements to insolation and a solar protection of premises of residential and commercial buildings and territories. (Russia)
13. Building Regulation СП 23–101–2004 Design of the thermal performance of buildings (Russia)
14. The scientific and application-oriented reference manual on climate of the USSR. Series 3. Longterm data. Parts 1–6, the issue 1–34, St. Petersburg: Gidrometeoizdat, 1989–1998.
Keywords
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