Estimation of Thermal Energy Efficiency Used in Building Operation
Abstract
Keywords
About the Authors
Nikolai A. TsvetkovRussian Federation
Aleksandr V. Tolstykh
Russian Federation
Yuliya N. Doroshenko
Russian Federation
Vitalii V. Penyavskii
Russian Federation
References
1. Bogoslovskii V.N. Teplovoi rezhim zdaniya [Thermal behavior of building]. Мoscow: Stroyizdat Publ., 1979. 248 p. (rus)
2. Tabunshchikov Yu.A., Brodach M.M. Matematicheskoe modelirovanie i optimizatsiya teplovoi effektivnosti zdanii [Mathematical simulation and optimization of building thermal efficiency]. Мoscow: ABOK Association Publ., 2002, 194 p. (rus)
3. Samarin O.D., Vasin P.S., Zaitsev N.N., Garifullin R.F., Zagortseva N.V. Raschet energoeffektivnosti zdanii i sravnitel'naya effektivnost' energosberegayushchikh meropriyatii [Energy efficiency of buildings and comparative efficiency of energy-saving measures]. Novosti teplosnabzheniya. 2004. No. 5. Pp. 32–36. (rus)
4. Tabunshchikov Yu.A., Livchak V.I., Gagarin V.G., Shilkin N.V. Puti povysheniya energoeffektivnosti ekspluatiruemykh zdanii [Efficiency improvement of building operation]. ABOK. 2009. No. 5. Pp. 38–47. (rus)
5. Granovsky V.L. Energoeffektivnye zdaniya – kompleksnoe reshenie dlya sistem otopleniya, ventilyatsii i goryachego vodosnabzheniya [Energy efficient buildings as complex decision for heating supply and ventilation systems]. AVOK. 2014. No. 4. Pp. 20–28. (rus)
6. Balmazov M.V., Kokorin O.Ya. Santekhnika Otoplenie Konditsionirovanie (COK). Energosberegayushchie sistemy otopleniya, ventilyatsii i konditsionirovaniya v kvartirakh mnogoetazhnykh zdaniy [Plumbing, heating and conditioning systems. Energy saving systems of heating, ventilation and conditioning in multi-storey buildings]. Available at: www.c-ok.ru/articles/energosberegayuschie-sistemy-otopleniya-ventilyacii-i-kondicionirovaniya-vkvartirah-mnogoetazhnyh-zdaniy/ (rus)
7. Kulikov V.V., Tolstykh A.V., Penyavskii V.V. Sravnenie energoeffektivnosti razlichnykh variantov organizatsii ventilyatsii v zdaniyakh sistemy KUPASS [Energy efficiency of different ventilation types in the universal prefabricated antiseismic building system]. Vestnik of Tomsk State University of Architecture and Building. 2015. No. 5. Рр. 151–160. (rus)
8. Tabunshchikov Yu.A., Miller Yu.V. Printsipy opredeleniya godovogo energopotrebleniya na klimatizatsiyu zdanii [Determination principles of annual energy consumption of air conditioning]. ABOK Association Publ., 2008. No. 5. Рр. 4–11. (rus)
9. Fedyuk R.S. Sistemnoe proektirovanie energoeffektivnykh zdanii [System design of energy efficient buildings]. Vestnik RUDN, seriya Inzhenernye issledovaniya. 2011. No 3. Рр. 19–23. (rus)
10. Cheng Y., Nin J., Gao N. Thermal comfort models: A review and numerical investigation. Building and Environment. 2012. V. 47. Pp. 13–22.
11. Orr H., Wang J., Fetsch D., Dumont R. Technical note: Airtightness of older-generation energy-efficient houses in Saskatoon. Journal of Building Physics. 2013. V. 36. Pp. 294–307.
12. Naumov A.L., Kapko D.V. Opredelenie klassa energeticheskoi effektivnosti ekspluatiruemykh zhilykh mnogokvartirnykh domov [Class determination of energy efficiency of houses]. Energosberezhenie. 2015. No. 8. Рр. 24–29. (rus)
13. Kornienko S.V. Raschetno-eksperimental'nyi kontrol' energosberezheniya zdanii [Analysis and experimental control of building energy saving]. Magazine of Civil Engineering. 2013. No. 8. Рр. 24–30. (rus)
Review
For citations:
Tsvetkov N.A., Tolstykh A.V., Doroshenko Yu.N., Penyavskii V.V. Estimation of Thermal Energy Efficiency Used in Building Operation. Vestnik of Tomsk state university of architecture and building. 2016;(6):189-200. (In Russ.)