Ruslan Ahaiev, Dmytro Prytula, Eduard Kliuiev, Dmytro Zhytlonok, Edgar Cabana, Liudmyla Kabakova. The determination of the influence degree of mining-geological and mining-technical factors on the safety of the degassing system

Geoteh. meh. 2020, 153, 5-12

https://doi.org/10.1051/e3sconf/202016800040

 

THE DETERMINATION OF THE INFLUENCE DEGREE OF MINING-GEOLOGICAL AND MINING-TECHNICAL FACTORS ON THE SAFETY OF THE DEGASSING SYSTEM

1Ruslan Ahaiev, 1Dmytro Prytula, 1Eduard Kliuiev, 2Dmytro Zhytlonok, 3Edgar Cabana, 1Liudmyla Kabakova

1Institute of Geotechnical Mechanics named by N. Poljakov of National Academy of Sciences of Ukraine, 2State Enterprise "Toretskvuhillia", 3Universidad Nacional de San Agustin de Arequipa

Language: English

Abstract. This article presents the results of the calculation of methane emission from the development of coal seam and enclosing rocks in the roof on Mine Management "Sukhodolska-Skhidna". The required degassing efficiency and the degassing method were determined. The degree of influence of mining -technical and mining-geological factors on the safety of the degassing system has established. The determination of the influence degree of mining factors on the safety of the degassing system can be used both at the design stage mine, mining and preparing it, which allow to predict and prevent the formation of an explosive concentration of methane-air mixture.


REFERENCES:

1. Ahaiev, R., Vlasenko, V., Dudlia, K., Kyrychenko, M., Prytula, D. (2017). On the possibility of coalbed methane extraction as a source of energy under the hydrodynamic impact on the outburst coal seam. Advanced Engineering Forum Submitted, 25, 106-112

2. Shushov, M. (2018) Preliminary degassing of coal seams as a factor in improving safety and labor productivity. In: Dnipro II International Conference on Coal Industry. Retrived from https://dtek.com/content/files/maksim-shishov.pdf

3. R. Dychkovskyi, V. Falshtynskyi, V. Ruskykh, E. Cabana, O. Kosobokov. A modern vision of simulation modelling in mining and near mining activity. E3S Web of Conferences, Ukrainian School of Mining Engineering, 60 (2018).  https://doi.org/10.1051/e3sconf/20186000014

4. V. Vlasenko, V. Gavrilov, O. Moskovskiy. Influence of hydrodynamic impact on degassing of steep coal seam at the top of the overhead longwall (CRC Press/Balkema: EN Leiden, The Netherlands, 2015)

5. E. Cabana, V. Falshtynskyi, P. Saik, V. Lozynskyi, R. Dychkovskyi. A concept to use energy of air flows of technogenic area of mining enterprises. E3S Web of Conferences, Ukrainian School of Mining Engineering, 60 (2018).  https://doi.org/10.1051/e3sconf/20186000004

6. R. Dychkovskyi, O. Vladyko, D. Maltsev, E. Cabana. Some aspects of the compatibility of mineral mining technologies. Rudarsko Geolosko Naftni Zbornik, 33 (2018). https://doi.org/10.17794/rgn.2018.4.7

7. V. Vlasenko, D. Zhytlonok. Hydrodynamic impact on coal mass before crossing the most outburst-prone coal seams. E3S Web of Conferences, International Conference Essays of Mining Science and Practice, 109 (2019).  https://doi.org/10.1051/e3sconf/201910900112

8. DNPAOP 1.1.30-6.09 (1994) Kerivnytstvo z proektuvannia ventylyatsiyi vuhilnykh shakht. Kyiv: Ministerstvo palyva ta enerhetyky Ukrainy

9. SOU 10.1.00174088.001 (2004) Kerivnytstvo po proektuvanniu dehazatsii vuhilnykh shakht. Pravyla bezpechnoi ekspluatatsii dehazatsiinykh system. Kyiv: Minpalenerho Ukrainy