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INDUSTRY SAFETY AND LABOUR PROTECTION
Название Enhancement of pre-mining methane drainage efficiency
DOI 10.17580/gzh.2017.07.18
Автор Magomet R. D., Seregin A. S.
Информация об авторе

Saint-Petersburg Mining University, Saint-Petersburg, Russia:

R. D. Magomet, Associate Professor, Candidate of Engineering Sciences, rmagomet@yandex.ru
A. S. Seregin, Associate professor, Candidate of Engineering Sciences

Реферат

The article addresses the issue of the enhancement of efficiency in pre-mining drainage of unloaded coal bed methane with a view to improving the coal mine safety and increasing the face output. The coal mining industry in Russia is one of the backbones of the national economy. A distinctive feature of mining to date is deterioration of operating conditions: deep level of mining, increased gas content of coal beds, as well as increased gas inflow from enclosing rocks and growth of outburst hazard with the depth of coal mining. Majority of fatal large accidents in mines were caused by methane explosions due to high methane content of coal beds under mining and owing to erratic ventilation of roadways. High explosibility of air and methane mixture makes coalbed methane one of the key hazards for mining and a constraint for using modern high-production equipment. Enhancement of mining efficiency is possible through introduction of new technologies based on the estimation of the entire production chain and on the implementation of measures aimed at improvement of mine performance and personnel training quality. The article describes the method of an unloaded coal bed treatment by hydraulic perturbation created at the mouth of a hole drilled from a gateway. Such treatment increases gas permeability of coal. The pulsed hydrodynamic impact is exerted on the unloaded coal bed in the course of coalbed drainage. The authors analyze the results of the experiment carried out in Boldyrevsky coal bed in Kirov Mine (Leninsk-Kuznetsky, Russia). The goal of the analysis is to improve coalbed drainage efficiency by means of selecting proper parameters of the hydraulic pulsed treatment.

Ключевые слова Coal bed, permeability, pulsed hydrodynamic treatment, inertia, coalbed methane, methane safety
Библиографический список

1. Mazanik E. V. Improvement of degassing technology at coal mines on the basis of preliminary stage well preparation of mine fields : thesis of inauguration of Dissertation … of Candidate of Engineering Sciences. Moscow, 2010. 233 p.
2. Slastunov S. V., Karkashadze G. G., Ivanov Yu. M., Shmat V. N. Development of technological recommensations by the preliminary degassing of “Boldyrevskiy” layer from openings on the field of the Kirov mine (JSC «SUEK-Kuzbass»). Gornyy informatsionno-analiticheskiy byulleten. 2011. Special issue No. 8. Ecology. Methane safety. pp. 22–30.
3. Afanasev P. I., Yutyaev E. P., Seregin A. S., Erzin A. Kh. Substantiation of technological parameters of cyclical hydrodynamic impact in the mode of hydrobump during the preliminary degassing of coal layers. Gornyy informatsionno-analiticheskiy byulleten. 2013. Special issue No. 2. Collection of scientific and technical works of mining engineers of SUEK. pp. 237–246.
4. Puchkov L. A., Slastunov S. V., Kolikov K. S. Methane extraction from coal layers. Moscow : MGGU, 2002. 383 p.
5. Belin V. A., Gribanov N. I., Shilov A. A., Pelykh N. M. Methods of destruction of layer-collector by burning energy of energetic condensed systems : tutorial. Moscow : MGGU, 2011. 213 p.
6. Lu T., Wang Z., Yang H., Yuan P., Han Y., Sun X. Improvement of coal seam gas drainage by under-panel cross-strata stimulation using highly pressurized gas. International Journal of Rock Mechanics and Mining Sciences. 2015. Vol. 77. pp. 300–312.
7. Hou B., Chen M., Wang Z., Yuan J., Liu M. Hydraulic fracture initiation theory for a horizontal well in a coal seam. Petroleum Science. 2013. Vol. 10, Iss. 2. pp. 219–225.
8. Yaxi Chen, Dameng Liu, Yanbin Yao, Yidong Yao, Yidong Cai. Dynamic permeability change during coalbed methane production and its controlling factors. Journal of Natural Gas Science and Engineering. 2015. Vol. 25. pp. 335–346.

9. Zhao J., Tang D., Xu H., Lv Y., Tao S. High production indexes and the key factors in coalbed methane production: A case in the Hancheng block, southeastern Ordos Basin, China. Journal of Petroleum Science and Engineering. 2015. Vol. 130. pp. 55–67.
10. Puchkov L. A., Slastunov S. V., Kolikov K. S. Problems of realization of the concept of methane safetyon mines of Russia. Ugol. 2009. No. 1. pp. 26–31.
11. Slastunov S. V., Kolikov K. S., Ermak G. P. Coal methane: extraction or degassing. Gazovaya promyshlennost. 2012. No. 10. pp. 60–62.
12. Slastunov S. V. Methane safety of Russian coal mines – a key problem of coal industry. Gornyy informatsionno-analiticheskiy byulleten. 2011. Special issue No. 1. Proceedings of the scientific symposium “Miner's week – 2011”. pp. 9–26.
13. Karmanskiy A. T. Investigations of the mechanism of methane desorption in coal saturation with carbon dioxide. Zapiski Gornogo instituta. 2009. Vol. 183. pp. 285–288.
14. Shipulin A. V., Korshunov G. I., Paltsev A. I., Seregin A. S. Creation of block-fissured structure in coal layer during the hydrodynamic impact by pulse-wave effect. Gornyy informatsionno-analiticheskiy byulleten. 2012. No. 4. pp. 109–112.
15. Korshunov G. I., Shipulin A. V., Seryogin A. S. Increase in gas permeability of coal by pulse and wave influence through wells. Gazovaya promyshlennost. 2012. Iss. 672. pp. 46–47.

Language of full-text русский
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