[1]
V.S. Veselovski, L.N. Vinogradova, G.N. Orleanskaya, Physical foundations of coal and ore self-ignition. Nauka, Moscow. (1972).
Google Scholar
[2]
V.S. Veselovski, L.N. Vinogradova, G.N. Orleanskaya, Forecasting and preventing endogenetic fires. Nauka, Moscow. (1975).
Google Scholar
[3]
V.A. Portola, Influence of certain factors on the process of coal self-ignition. J. Physiko-technicheskie problemy razrabotki poleznyh iskopaemyh. 33 (1996) 61-68.
Google Scholar
[4]
O.G. Brunov, S.A. Solodskii, Physico-mathematical modelling of the transfer of electrode metal droplets into the weld pool, J. Welding International. 23(12) (2009) 930-933.
DOI: 10.1080/09507110903210702
Google Scholar
[5]
S.A. Kuznetsova, V.V. Kozik, A.G. Malchik, Synthesis of transparent conductive coating In2O3: Sn films from film forming solutions, J. Applied Mechanics and Materials. 682 (2014) 401-404.
DOI: 10.4028/www.scientific.net/amm.682.401
Google Scholar
[6]
V.I. Saranchuk, Oxidation and self-ignition of coal, Nauk. Dumka, Kiev. (1982).
Google Scholar
[7]
V.F. Torosyan, Е.S. Torosyan, Development of mixture clay – electro-smelting slag, for ceramic brick, J. Applied Mechanics and Materials. 682 (2014) 480-484.
DOI: 10.4028/www.scientific.net/amm.682.480
Google Scholar
[8]
V.F. Torosyan, Е.S. Torosyan, Ecological assessment of water reservoirs in coal-mining regions. J. Gorny informatsionno-analiticheskiy bulleten. ОВ7 (2012) 146-154.
Google Scholar