[1]
Petrov, Y.V., Bekbaev, A.B., Akhmetzhanov, B.K., Petrov, V.A. Technical tools of education for training of engineers in the fields of renewable energy and energy efficiency. (2010) Regional East Journal, №1 pp.6-12.
Google Scholar
[2]
Petrova, Y.V., Petrov, V.A., Markin, O.V., Balov, Y.A. The utility model application Polygon for the use of renewable sources. Variants,. Reg. № 103. 2 / 2009 dated from September 9, (2009).
Google Scholar
[3]
Petrova, Y.V., Zveryev, A.V., Petrov, V.A. Polygon for the use of renewable energy. Proceedings of Intl. research and method. conf. Technical Universities in modernization of the Russian economy, January 27-28, 2011, Tomsk, Tomsk State. University of Control Systems and Radio Electronics.
Google Scholar
[4]
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, Vol. 12 (2), pp.121-128.
DOI: 10.5937/jaes12-6136
Google Scholar
[5]
Aronova, E., Radovic, G., Murgul, V., Vatin, N. Solar Power Opportunities in Northern Cities (Case Study of Saint-Petersburg) (2014) Applied Mechanics and Materials. Vols. 587-589, pp.348-354.
DOI: 10.4028/www.scientific.net/amm.587-589.348
Google Scholar
[6]
Vatin N., Nemova., Kazimirova A., Gureev K., Increase of energy efficiency of the building of kindergarten. (2014) Advanced Materials Research. Vols. 587-589 pp.342-347.
DOI: 10.4028/www.scientific.net/amr.953-954.1537
Google Scholar
[7]
Vatin N., Nemova D., Tarasova D., Staritcyna A., Increase of energy efficiency for educational institution building. (2014) Advanced Materials Researchs. Vols. 953-954 pp.1537-1544.
DOI: 10.4028/www.scientific.net/amr.953-954.854
Google Scholar
[8]
Radovic, G., Murgul, V., Vatin, N., Aronova, E. Hybrid photovoltaic-diesel energy system optimization (case study of electric power supply for buildings under the weather conditions of Montenegro). (2014).
DOI: 10.4028/www.scientific.net/amm.627.357
Google Scholar
[9]
Vatin N., Petrichenko M., Nemova D., Hydraulic methods for calculation of system of rear ventilated facades. (2014) Applied Mechanics and Materials. Vols. 633-634, pp.1007-1012.
DOI: 10.4028/www.scientific.net/amm.633-634.1007
Google Scholar
[10]
Petrichenko M., Vatin, N., Nemova D., Kharkov N., Korsun A., Numerical modeling of thermogravitational convection in air gap of system of rear ventilated facades. (2014) Applied Mechanics and Materials. Vols. 672-674, p.1903-(1908).
DOI: 10.4028/www.scientific.net/amm.672-674.1903
Google Scholar
[11]
Szkarowski, A., Janta-Lipińska, S. Badania energo-ekologicznych wskaźników pracy kotłów przy spalaniu paliwa ze sterowanym resztkowym niedopałem chemicznym (2013) Rocznik Ochrona Środowiska (Annual Set The Environment Protection), 15, p.981–995.
Google Scholar
[12]
Murgul, V., Vatin, N., Aronova, E. Autonomous systems of solar energy supply under the weather conditions of Montenegro. (2014) Applied Mechanics and Materials. Vol. 680 pp.486-493.
DOI: 10.4028/www.scientific.net/amm.680.486
Google Scholar
[13]
Vatin, N. I., Gorshkov, A. S., Nemova, D. V., Staritcyna, A. A., Tarasova, D. S. The energy-efficient heat insulation thickness for systems of hinged ventilated facades. Advanced Materials Research, Vols. 941-944, (2014), pp.905-920.
DOI: 10.4028/www.scientific.net/amr.941-944.905
Google Scholar
[14]
Mikielewicz, J., Matysko, R. Układ ORC jako system poprawy efektywności energetycznej w instalacji turbiny gazowej zasilanej z układu beztlenowej stabilizacji osadów ściekowych (2013).
Google Scholar