Development of Energy-Saving Measures for the Multi-Story Apartment Buildings

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The paper presents a structural analysis of the energy consumption of multi-story residential building, obtained based on analysis of the actual data flow and heat consumption, energy audits and data for assessing the state of the energy efficiency of residential buildings. The paper suggests techniques for improving energy efficiency. With the settlement proposed in the article shows the need and economic feasibility of the implementation of organizational and technical measures to improve the energy efficiency of residential buildings.

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1408-1416

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January 2015

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] Murgul, V. Features of energy efficient upgrade of historic buildings (illustrated with the example of Saint-Petersburg) (2014) Journal of Applied Engineering Science, 12 (1), pp.1-10.

DOI: 10.5937/jaes12-5609

Google Scholar

[2] Gorshkov, A.S., Voylokov, I.A. Ekonomicheskiy analiz ispolzovaniya energoeffektivnykh istochnikov sveta s tochki zreniya potrebitelya [Economic analysis of the use of energy-efficient light sources from the point of view of the consumer] (2009).

Google Scholar

[3] Borello, D., Corsini, A., Rispoli, F., Tortora, E. A Co-Powered Biomass and Concentrated Solar Power Rankine Cycle Concept for Small Size Combined Heat and Power Generation (2013) Energies, 6, pp.1478-1496.

DOI: 10.3390/en6031478

Google Scholar

[4] Semenova, E.E., Kotova, K.S. Razrabotka mer po povyisheniyu energeticheskoy effektivnosti zdaniy [Development of measures for energy efficiency in buildings] (2012) Ekologiya, 1, pp.193-196. (rus).

Google Scholar

[5] Zelenov, G.A., Chernenko, E.V. Optimal window structure option on the initial project stage (2013) Construction of Unique Buildings and Structures, 3(8), pp.24-29.

Google Scholar

[6] Vostrikova, E.V. Energy-efficient renovation of residential buildings of the 1960s (2014).

Google Scholar

[7] Murgul, V. Solar energy systems in the reconstruction of heritage historical buildings of the northern towns (for example Sankt-Petersburg) (2014) Journal of Applied Engineering Science, 12 (2), pp.121-128.

DOI: 10.5937/jaes12-6136

Google Scholar

[8] Aronova, E., Radovic, G., Murgul, V., Vatin, N. Solar Power Opportunities in Northern Cities (Case Study of Saint-Petersburg) (2014) Applied Mechanics and Materials, 587-589, pp.348-354.

DOI: 10.4028/www.scientific.net/amm.587-589.348

Google Scholar

[9] 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, 633-634, pp.1077-1081.

DOI: 10.4028/www.scientific.net/amm.633-634.1077

Google Scholar

[10] Bukhartsev, V.N., Petrichenko, M.R. Condition of mechanical-energy balance of an integral flow with a variable rate (2001) Power Technology and Engineering, 35 (4), pp.189-194.

Google Scholar

[11] Bukhartsev, V.N., Petrichenko, M.R. Approximation of the depression curve of the inflow to an ideal trench (2011) Power Technology and Engineering, pp.1-4.

DOI: 10.1007/s10749-011-0193-9

Google Scholar

[12] Kanga, N.N., Choa, S.H., Kimb, J.T. The energy-saving effects of apartment residents' awareness and behavior (2012) Energy and Buildings, 46, p.112–122.

DOI: 10.1016/j.enbuild.2011.10.039

Google Scholar

[13] Uygunoğlua, T., Keçebaşb, A. LCC analysis for energy-saving in residential buildings with different types of construction masonry blocks (2011) Energy and Buildings, 43, p.2077–(2085).

DOI: 10.1016/j.enbuild.2011.04.011

Google Scholar

[14] Samardzioska, T., Trombeva-Gavriloska, A., Cvetanovski, P., Popovski, D., Partikov, M. Strengthening and overbuilding of car service «Automakedonija» in Skopje, Makedonija (2012) Journal of Applied Engineering Science, 1 (10), pp.53-58.

DOI: 10.5937/jaes10-1665

Google Scholar

[15] Petronijevic, P., Ivanisevic, N., Rakocevic, M., Arizanovic, D. Methods of calculating depreciation expenses of construction machinery (2012) Journal of Applied Engineering Science, 1 (10), pp.43-48.

Google Scholar

[16] Petrichenko, R.M., Mezheritskii, A.D. Options in the quasi-stationary method of designing impulse turbines for supercharging internal combustion engine systems (1989) Soviet energy technology, 5, pp.13-17.

Google Scholar

[17] Murgul,V. Improvement of the energy efficient properties of the houses in the historical area of Saint-Petersburg (2012) Architecton: Proceedings of Higher Education, 4 (40), pp.54-62.

Google Scholar

[18] Aronova, E., Murgul, V. The evaluation of the appropriateness for using solar energy technologies in the historical building of Saint-Petersburg and the climatic conditions of the North-West region (2013).

Google Scholar

[19] Murgul, V. Solar energy in the reconstruction of urban environment of historic building Saint-Petersburg (2013) Architecture and Modern Information Technologies, 2 (23), pp.1-24.

Google Scholar

[20] Murgul, V. Capabilities of using the solar energy for energy supply of the dwelling buildings of the historical area of Saint-Petersburg and for city environment quality improvement (2013).

Google Scholar

[21] Golovina, S., Murgul, V. Solar energy systems in the architecture of historic cities (2013) Bulletin of Civil Engineers. 5 (40), pp.26-31.

Google Scholar

[22] Murgul, V., Vuksanovic, D., Pukhkal, V., Vatin, N. Development of the ventilation system of historic buildings in St. Petersburg (2014) Applied Mechanics and Materials, 633-634, pp.977-981.

DOI: 10.4028/www.scientific.net/amm.633-634.977

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, 638-640, pp.2465-2470.

DOI: 10.4028/www.scientific.net/amm.638-640.2465

Google Scholar

[24] 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

[25] Radovic, G., Murgul, V., Vatin, N. Fast urban development of Cetinje – old royal capital of Montenegro (2014) Applied Mechanics and Materials, 584-586, pp.564-569.

DOI: 10.4028/www.scientific.net/amm.584-586.564

Google Scholar

[26] Vuksanovic, D., Murgul, V., Vatin, N., Aronova, E. Shadowing impact on amount of power generated by photovoltaic modules (2014) Applied Mechanics and Materials, 587-589, pp.342-347.

DOI: 10.4028/www.scientific.net/amm.587-589.342

Google Scholar

[27] Murgul, V., Vuksanovic, D., Vatin, N., Pukhkal, V. The use of decentralized ventilation systems with heat recovery in the historical buildings of St. Petersburg (2014) Applied Mechanics and Materials, 635-637, pp.370-376.

DOI: 10.4028/www.scientific.net/amm.635-637.370

Google Scholar

[28] Murgul, V., Vatin, N., Aronova, E. Solar power supply in the system of restoration and reconstruction remote historic and cultural objects (on the example of Montenegro) (2014) Applied Mechanics and Materials, 635-637, p.2029-(2035).

DOI: 10.4028/www.scientific.net/amm.635-637.2029

Google Scholar

[29] Vatin, N., Gorshkov, A., Nemova, D., Staritcyna, A., Tarasova, D. The energy-efficient heat insulation thickness for systems of hinged ventilated facades (2014) Advanced Materials Research, 941-944, pp.905-920.

DOI: 10.4028/www.scientific.net/amr.941-944.905

Google Scholar

[30] Petrichenko, M., Vatin, N., Nemova, D., Kharkov, N., Staritcyna, A. EOR (Oil Recovery Enhancement) Technology Using Shock Wave in the Fluid (2014) Applied Mechanics and Materials, 627, pp.297-303.

DOI: 10.4028/www.scientific.net/amm.627.297

Google Scholar

[31] Vatin, N., Nemova, D., Kazimirova, A., Gureev, K. Increase of energy efficiency of the building of kindergarten (2014) Advanced Materials Research, 953-954, pp.1537-1544.

DOI: 10.4028/www.scientific.net/amr.953-954.1537

Google Scholar