Energy modernization of residential houses as a challenge of modern

Authors

DOI:

https://doi.org/10.15587/2313-8416.2018.153368

Keywords:

energy saving, energy-efficient house, thermal capacity, energy efficiency, passive house, energy consumption criterion, energy modernization

Abstract

The work is devoted to studying the need for thermo-modernization and improving the energy efficiency of the housing stock of Ukraine. The statistics of energy consumption by buildings of various types is analyzed. Thermal modernization measures necessary to reduce the cost of heat consumption are described. The economic feasibility of the reconstruction of certain types of residential buildings is determined, taking into account their energy efficiency. The main architectural planning and design techniques to improve energy efficiency on the example of building in the central part of the Kharkiv are implemented

Author Biographies

Tetiana Apatenko, O. M. Beketov National University of Urban Economy in Kharkiv Marshala Bazhanova str., 17, Kharkiv, Ukraine, 61002

Senior Lecturer

Department of Urban Construction

Olena Bezlyubchenko, O. M. Beketov National University of Urban Economy in Kharkiv Marshala Bazhanova str., 17, Kharkiv, Ukraine, 61002

PhD, Associate professor

Department of Urban Construction

Oleksandr Zavalniy, O. M. Beketov National University of Urban Economy in Kharkiv Marshala Bazhanova str., 17, Kharkiv, Ukraine, 61002

PhD, Associate professor

Department of Urban Construction

References

Derzhavna sluzhba statystyky Ukrainy. Available at: http://ukrstat.gov.ua

Barannik V. O. (2016). Enerhoefektyvnist Ukrainy – chy dosiazhni postavleni stratehichni tsili? Stalyi rozvytok terytoriy: problemy ta shliakhy vyrishennia: materialy II mizhnar. nauk.-prakt. konf. Dnipro, 4–9.

Termomodernizatsiya zhytlovoho fondu: orhanizatsiynyi, yurydychnyi, sotsialnyi, finansovyi i tekhnichnyi aspekty (2014). Lviv, 240.

Soventnikov, D. O. (2014). Construction of building in accordance with passive house standards. Construction of Unique Buildings and Structures, 9, 11–25.

Korniyenko, S. V. (2013). Experience of design and construction of energy effective buildings in Volgograd. Construction of Unique Buildings and Structures, 9, 21–33.

Shoyhet, B. M. (2007). Koncepciya energoeffektivnogo zdaniya. Evropeyskiy opyt. Energosberezhenie, 7, 62–65.

Tabunshchikov, Yu. A., Naumov, A. L. (2012). Energy efficiency in construction. Harmonization of the national legislative framework. AVOK: Ventilyaciya, otoplenie, kondicionirovanie vozduha, teplosnabzhenie i stroitel'naya teplofizika, 6 (6), 4–9.

Savin, V. K., Savina, N. V. (2013). Arhitektura i energoeffektivnost' zdaniy. Gradostroitel'stvo, 1, 82–84.

Voronin, A. V. (2007). Dosvid krain Yevrosoiuzu v haluzi tekhnichnoho normuvannia teplovoho zakhystubudivel i sporud. Tekhnolohiyi budivnytstva, 4, 75.

Morozova, T. G., Pobedina, M. P., Polyak, G. B. et. al.; Morozovoy, T. G. (Ed.) (2006). Regional'naya ekonomika: uchebnik dlya vuzov. Moscow: YUNITI, 472.

DBN V.2.6-31: 2006. Teplova izoliatsiya budivel (2006). Kyiv: Minrehionbud Ukrainy, 71.

Semenova, V. T., Lynnyk, I. E. (Eds.) (2016). Praktyka innovatsiynykh rozrobok u sferi terytorialʹno-prostorovoho rozvytku mist i rehioniv: monohrafiya. Kharkivskyi natsionalnyi unsversytett miskogo hospodarstva im. O. M. Beketova. Kharkiv: KHNUMH im. O.M. Beketova, 286.

DSTU-N B V.1.1-27:2010. Budivelna klimatolohiya (2011). Kyiv: Minrehionbud Ukrainy, 123.

Rodriguez-Ubinas, E., Montero, C., Porteros, M., Vega, S., Navarro, I., Castillo-Cagigal, M. et. al. (2014). Passive design strategies and performance of Net Energy Plus Houses. Energy and Buildings, 83, 10–22. doi: https://doi.org/10.1016/j.enbuild.2014.03.074

Cheng, Y., Niu, J., Gao, N. (2012). Thermal comfort models: A review and numerical investigation. Building and Environment, 47, 13–22. doi: https://doi.org/10.1016/j.buildenv.2011.05.011

Published

2018-11-27

Issue

Section

Architecture