[1]
A. Yu. Kouznetsov: The analysis of normative legislative basis for the process of reconstruction of residential buildings. Stroitelnyye materialy, oborudovaniye, tekhnologii XXI veka, 9, (2007), pp.65-67.
Google Scholar
[2]
N.I. Vatin, A.S. Gorshkov, D.V. Nemova: Energy efficiency of envelopes at major repairs. Construction of Unique Buildings and Structures, 3(8), (2013), pp.1-11.
Google Scholar
[3]
N.I. Vatin, V.V. Volodin, E.A. Zolotareva, K.V. Petrov, E.N. Zhmarin: Reconstruction of St. Petersburg roofs based on light steel thin-walled structures and de-icing system. Magazine of Civil Engineering, 2(12), (2010), pp.59-64.
Google Scholar
[4]
Yu.S. Vytchikov, I.G. Belyakov , E.A. Belyakova: Improvement of the energy efficiency of residential buildings under reconstruction. Stroitelnyye materialy, oborudovaniye, tekhnologii XXI veka, 1, (2008), pp.62-63.
Google Scholar
[5]
O.N. Popova, T.L. Simankina: The service life estimation method for the structural elements of residential buildings. Magazine of Civil Engineering, 7(42), (2013), p.40–50.
DOI: 10.5862/mce.42.6
Google Scholar
[6]
A.V. Ulybin, S.V. Zubkov, S.D. Fedotov, A. Yu. Zakrevsky: Inspection of pile foundation before constructing additional storeys оn existing buildings. Magazine of Civil Engineering, 4(48), (2014), p.17–27.
DOI: 10.5862/mce.48.3
Google Scholar
[7]
N.I. Vatin, D.V. Nemova, V. Murgul, V. Pukhkal, A. Golik , E. Chizhov: Reconstruction of administrative buildings of the 70's: the possibility of energy modernization. Journal of Applied Engineering Science, 1, (2014), pp.37-44.
DOI: 10.5937/jaes12-5610
Google Scholar
[8]
M.N. Rusakov: Increasing the quality of building and erection work at reconstruction of industrial buildings. Promyshlennoye i grazhdanskoye stroitelstvo, 5, (2006), p.44.
Google Scholar
[9]
A.S. Gorshkov, N.I. Vatin, P.P. Rymkevitch: State program's realization of residential and public buildings energy efficiency improvement. Stroitelnyye materialy, oborudovaniye, tekhnologii XXI veka, 1(180), (2014), pp.39-46.
Google Scholar
[10]
S.G. Golovina: Structures of historic buijdings and regulation rules of their reconstruction. Promyshlennoye i grazhdanskoye stroitelstvo, 11, (2007), p.36.
Google Scholar
[11]
G. Cultrone, E. Sebastián, I. Sidraba: Mineralogical and physical characterization of the bricks used in the construction of the Triangul bastion, Riga (Latvia). Applied Clay Science, 1-4 Spec. Iss. (28), (2005), pp.297-308.
DOI: 10.1016/j.clay.2004.02.005
Google Scholar
[12]
L. Ustinovichius, R. Rasiulis, C. Ignatavičius, T. Vilutien: Analysis of waterproofing defects and technology development for car parking roofs: Lithuanian case. Journal of Civil Engineering and Management, 4(18), (2012), pp.519-529.
DOI: 10.3846/13923730.2012.701231
Google Scholar
[13]
N.I. Vatin, A.S. Gorshkov, D.V. Nemova, A.A. Staritcyna , D.S. Tarasova: The energy-efficient heat insulation thickness for systems of hinged ventilated facades. Advanced Materials Research, 941-944, (2014), pp.905-920.
DOI: 10.4028/www.scientific.net/amr.941-944.905
Google Scholar