[1]
V.I. Gavrylov, A.V. Avdeev, Analiz mirovykh tendentsiy po razrabotke i sovershenstvovaniyu tekhnologicheskikh skhem dobychi uglya [Analysis of global trends in the development and improvement of technological schemes for coal mining], Nauka, Moscow, 2007, pp.207-210.
Google Scholar
[2]
K.K. Sofiiskyi , D.M. Zhytlonok, V.I. Gavrylov, V.V. Vlasenko and O.P. Petukh, Gidro-dinamicheskie sposoby vozdeystviya na napryazhonnye gazonasyshchennye ugolnye plasty [Hydrodynamic methods of impact on stressed gas-saturated coal seams], Shidnyi Vydavnychyi Dim, Donetsk, Ukraine, (2015).
Google Scholar
[3]
Ukraine Ministry of Coal Industry, 10. 1. 00174088. 011: 2005, Pravyla vedennia girnychykh robit na plastakh, skhylnykh do gazodynamichnykh yavishch [Rules of mining on the seams, which propensity to gas dynamic phenomena], Kiev, Ukraine, (2005).
Google Scholar
[4]
V.A. Amelin, Ye.H. Baradulin, I.P. Demidov, V.O. Nechytailo, V.P. Portianko, D.P. Sylin, K.K. Sofiiskyi and M.O. Shmelev, Institute of Geotechnical Mechanics under NAS of Ukraine, Prystrii dlia gidrodynamichnoi dii na vuhilnyi plast [The device for hydrodynamic impact on the coal seam], UA, Patent №19956 (1997).
Google Scholar
[5]
A.F. Bulat, K.K. Sofiiskyi and D.P. Sylin, Gidrodinamicheskoe vozdeisvie na gazonasyschenye ygolnye plasty [The hydrodynamic impact on gas-bearing coal seams], Poligrafist, Dnepropetrovsk, Ukraine, (2003).
Google Scholar
[6]
V. Gavrylov, V. Vlasenko and O. Moskovskii, Influence of hydrodynamic impact on degassing of steep coal seam at the top of the overhead longwall, Theoretical and Practical Solutions of Mineral Resolurces Mining, 2015, pp.369-377.
DOI: 10.1201/b19901-64
Google Scholar
[7]
R. Agaiev, V. Vlasenko and E. Kliuev, Methane receiving from coal and technogenic deposits, Progressive Technologies of Coal, Coalbed Methane, and Ores Mining, 2014, pp.113-119.
DOI: 10.1201/b17547-21
Google Scholar
[8]
B.V. Bokiy, Ye. Ye. Dudlia, Otsenka effektivnosti dobychi metana na PAO «Shakhta im. A.F. Zasyad'ko» poverkhnostnymi skvazhinami [Estimation of the effectiveness of methane extraction at PJSC Shakhta im. A.F. Zasyadko, by surface wells], Dnepropetrovsk, Vol. 124 (2015).
Google Scholar
[9]
B.V. Bokiy, Ye. Ye. Dudlya and L.A. Novikov, Vybor ratsional'nykh parametrov dlya proyektirovaniya sistemy transportirovaniya metana ugol'nykh mestorozhdeniy [The choice of rational parameters for the design of the transportation system for methane coal deposits], Dnepropetrovsk, 2015, pp.189-199.
Google Scholar
[10]
D.A. Prytula, Ye. Ye. Dudlia, B.V. Bokiy, Metodologiya rascheta parametrov poverkhnostnoy degazatsionnoy gazotransportnoy sistemy dlya usloviy PAO «Shakhta im. A.F. Zasyad'ko» [Methodology for calculating the parameters of the surface degassing gas transmission system for the conditions of the PJSC Shakhta im. A.F. Zasyadko, ], Dnipro, Vol. 130 (2016).
Google Scholar
[11]
Ukraine Ministry of Fuel and Energy, 10. 1. 00174088. 001: 2004, Degazatsiya ugol'nykh shakht. Trebovaniya k sposobam i skhemy degazatsii [Degassing of coal mines. Requirements for methods and schemes of degassing], Kiev, Ukraine, (2004).
Google Scholar