Forecast of potentially dangerous rock pressure manifestations in the mine roadways by using information technology and radiometric control methods

Author:

Slashchov IORCID,Shevchenko VORCID,Kurinnyi VORCID,Slashchova OORCID,Yalanskyi OORCID

Publisher

Dnipro University of Technology

Subject

Geochemistry and Petrology,Geotechnical Engineering and Engineering Geology

Reference15 articles.

1. Bulat, A.F., & Slashchov, I.M. (2012). Development of computer systems mathematical modeling geomechanical processes. Geo-Technical Mechanics, (99), 16-27.

2. Bulat, A.F., Perepelytsya, V.H., Yalanskyy, A.A., Palamar-chuk, T.A., Yefremov, O.I., & Zabolotniy, A.H. (2013). Theoretical justification for the application of the emission radiation method as a factor in the production control of the rock massif. Geo-Technical Mechanics, (66), 3-14.

3. Bulat, A.F., Slashchov, I.N., & Slashchova, O.A. (2014). Interdependencies between geomechanical processes and emission of methane and radon decay products into underground workings of the coal mines. Geo-Technical Mechanics, (114), 272-286.

4. Bulat, A.F., Slashchov, I.M., & Slashchova, O.A. (2017). Evaluation methods of interconnected geomechanical and gas dynamic processes in the rock massif for the systems of working medium control in the mines. Geo-Technical Mechanics, (59), 34-44.

5. Fadeyev, A.B. (1987). The finite element method in geomechanics. Moscow, Russia: Nedra.

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