[1]
Kalikhman, A. D, Ivanova, A. Ye. Navesnyye fasadnyye sistemy v novom stroitelstve i rekonstruktsii zhilykh domov v Irkutstke (2011) Izvestiya vuzov. Investitsii. Stroitelstvo. Nedvizhimost, №1 (1), p.166‒173.
Google Scholar
[2]
Ivanova, A.S. Praktika primeneniya navesnykh fasadnykh sistem v Irkutske (2013) Izvestiya vuzov. Investitsii. Stroitelstvo. Nedvizhimost, №1 (4), p.160‒164.
Google Scholar
[3]
Petronijevic, P., Ivanisevic, N., Rakocevic, M., Arizanovic, D. Methods of calculating depreciation expenses of construction machinery (2012) Journal of Applied Engineering Science, № 1 (10), p.43‒48.
Google Scholar
[4]
Vatin, N., Petrichenko, M., Nemova, D. Hydraulic methods for calculation of system of rear ventilated facades (2014) Applied Mechanics and Materials, Vols. 633‒634, p.1007‒1012.
DOI: 10.4028/www.scientific.net/amm.633-634.1007
Google Scholar
[5]
GrinfeldI, G., Gorshkov, A., Vatin, N. Tests results strength and thermophysical properties of aerated concrete block wall samples with the use of polyurethane adhesive (2014) Advanced Materials Research, p.786‒799.
DOI: 10.4028/www.scientific.net/amr.941-944.786
Google Scholar
[6]
Life cycle environmental and economic analysis of polyurethane insulation in low energy buildings (2010) BRE Global 2010 Client report number, 254‒665, Brussels, Belgium. 121 p.
Google Scholar
[7]
Entropa, A.G., Brouwersb, H. J. H., Reindersc, A. H. M. E. Evaluation of energy performance indicators and financial aspects of energy saving techniques in residential real estate (2010) Energy and Buildings, Vol. 42, Issue 5, p.618‒629.
DOI: 10.1016/j.enbuild.2009.10.032
Google Scholar
[8]
Vaillencourt, Richard R. Simple Solutions to Energy Calculations (2007) Fourth Edition, Fairmont Press, 225 p.
Google Scholar
[9]
Gorshkov, A.S., Zadvinskaya, T.O. Comprehensive method of energy efficiency of residential house (2014) Advanced Materials Research, p.1570‒1577.
DOI: 10.4028/www.scientific.net/amr.953-954.1570
Google Scholar
[10]
Borodinecs, A., Zemitis, J., Prozuments, A. Passive use of solar energy in double skin facades for reduction of cooling loads (2012).
Google Scholar
[11]
Alihodzic, R., Murgul, V., Vatin, N., Aronova, E., Nikolić, V., Tanić, M., Stanković, D. Renewable Energy Sources used to Supply Pre-school Facilities with Energy in Different Weather Conditions (2014).
DOI: 10.4028/www.scientific.net/amm.624.604
Google Scholar
[12]
Borodinecs, A., Zemitis, J., Kreslins, A., Gaujena, B. Determination of optimal air exchange rate to provide optimal IAQ (2012) 10th International Conference on Healthy Buildings 2012, p.1114‒1119.
Google Scholar
[13]
Borodinecs, A., Gaujena, B. The implementation of building envelopes with controlled thermal resistance (2012) p.1715‒1722.
Google Scholar
[14]
Borodiņecs, A., Kresliņš, A., Dzelzitis, E., Krumiņš, A. Introduction of hybrid ventilation systems of dwelling buildings in Latvia (2007).
Google Scholar
[15]
Kaklauskas, A.A., Rute, J.A., Zavadskas, E.K.A., Daniunas, A.A., Pruskus, V.A., Bivainis, J.A., Gudauskas, R.B., Plakys, V.A. Passive House model for quantitative and qualitative analyses and its intelligent system (2012).
DOI: 10.1016/j.enbuild.2012.03.008
Google Scholar
[16]
Uygunoğlua, Tayfun, Keçebaşb, Ali. LCC analysis for energy-saving in residential buildings with different types of construction masonry blocks (2011) Energy and Buildings, Vol. 43, Issue 9, p.2077–(2085).
DOI: 10.1016/j.enbuild.2011.04.011
Google Scholar
[17]
Pukhkal, V., Murgul, V., Vatin, N. Central ventilation system with heat recovery as one of the measures to upgrade energy efficiency of historic buildings (2014) Applied Mechanics and Materials, p.633‒634, p.1077‒1081.
DOI: 10.4028/www.scientific.net/amm.633-634.1077
Google Scholar
[18]
Radovic, G., Murgul, V, Vatin, N. Fast urban development of Cetinje – old royal capital of Montenegro (2014) Applied Mechanics and Materials, p.584‒586, p.564‒569.
DOI: 10.4028/www.scientific.net/amm.584-586.564
Google Scholar
[19]
Eastop, D., Croft, D. R. Energy Efficiency (1990) Longman, 400 p.
Google Scholar
[20]
Guoa, W., Qiaoa, X, Huanga, Y, Fanga, M., Hanb, X. Study on energy saving effect of heat-reflective insulation coating on envelopes in the hot summer and cold winter zone(2012) Energy and Buildings, Volume In Press, Corrected Proof, p.43‒53.
DOI: 10.1016/j.enbuild.2012.03.035
Google Scholar
[21]
Mikheev, D.A. Improving the thermal efficiency of the outer wall protections based on thermal analysis studies (2010) Building construction, p.170‒171.
Google Scholar
[22]
Panfilov, V.I. Improving the energy efficiency of heating systems in buildings teplotehnologicheskih points (2009) Power systems and complexes, p.23‒32.
Google Scholar
[23]
Ćetković, J., Knežević, M., Žarković, M., Murgul, V., Vatin, N. Development and competitiveness improvement of the construction sector in Montenegro (2014) Applied Mechanics and Materials, Vol. 638-640, p.2465‒2470.
DOI: 10.4028/www.scientific.net/amm.638-640.2465
Google Scholar