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Analysis of ventilation of working areas in thick gently dipping coalbeds

  • Regional Issues of Subsoil Use: Kuzbass
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Journal of Mining Science Aims and scope

Abstract

Advanced technologies and modern high-production machines for underground mining of thick gently dipping coal demand strict adherence to technological discipline, reduction in operational loss and selection of optimized ventilation modes. The authors analyze ventilation schemes used in working areas in thick gently dipping seams in order to reveal influence exerted by the schemes, methods and parameters of ventilation on distribution of air loss in mined-out areas.

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References

  1. Vremennoe rukovodstvo po vyboru tekhnologicheskikh skhem provetrivaniya i upravleniya gazovydeleniem na vuemochnykh uchastkakh (Preliminary Manual on Choosing Ventilation and Gas Emission Control Charts for Extraction Areas), Moscow: VostNII, 1984.

  2. Rukovodstvo po primeneniyu sposobov tormozheniya razvitiya samonagrevaniya uglya v vyrabotannykh prostranstvakh vyemochnykh polei shakht (Guidelines on Inhibition of Coal Self-Heating in Mined-Out Voids in Mines), Kemerovo: VostNII, 1985.

  3. Belaventsev, L.P., Initiation of Coal Self-Ignition Sources in Mines, Ugol’, 1985, no. 7.

  4. Belaventsev, L.P., Golun’, V.A., Voroshilov, S.P., Bykova, Z.S., Torro, V.O., et al., Rukovodstvo po primeneniyu sposoba profilaktiki endogennykh pozharov na printsipe intensifikatsii dezaktivatsii uglya v shakhtakh Kuzbassa (Guidelines on Endogenous Fire Control Based on Intensified Coal Deactivation in Kuzbass Mines), Kemerovo: VostNII, 1997.

    Google Scholar 

  5. Belaventsev, L.P., Torro, V.O., and Purtov, V.A., Aerodynamic Approach to Endogenous Fire Prevention in Mines, Ugol’, 1994, no. 11.

  6. Arsenov, N.S., Belov, V.P., Kalinin, S.I., et al., Tekhnologicheskie skhemy razrabotki pologikh i naklonnykh plastov Kuznetskogo Basseina (Mining Process Flow Diagrams for Gently dipping and Inclined Beds in the Kuznetsk Coal Basin), Prokopievsk, 1989.

    Google Scholar 

  7. Torro, V.O., Belov, V.P., and Remezov, A.V., Experience of Gently Dipping Thick Coal Mining, Ugol’, 2008, no. 1.

  8. Nogikh, S.R., Yasyuchenya, S.V., Durnin, M.K., and Torro, V.O., Problems of Technical and Technological Upgrading of Coal Mines in Kuzbass in Terms of Yuzhkuzbassugol, GIAB, 2008, no. 11.

  9. Torro, V.O., Serdobintsev, N.G., Kalinin, S.I., et al., Determination of Cross-Section, Location, Drivage and Support Technologies for Assembly Chamber 21-1-5, Vestn. KGTU, 2008, no. 4.

  10. Torro, V.O., Kalinin, S.I., Serdobintsev, N.G., Biktinirov, I.S., and Novosel’tsev, S.A., Analysis of Events due to Rock Pressure in Mining of Thick Coal Bed with Top-Coal Discharge, Ugol’, 2009, no. 1.

  11. Torro, V.O., Morozov, Yu.I., Serdobintsev, N.G., and Remezov, A.V., Laboratory Research of Events due to Rock Pressure in Bottom-Up Inclined Slicing of Thick Gently Dipping Coalbed, Vestn. KGTU, 2011, no. 6.

  12. Torro, V.O., Morozov, Yu.I., Serdobintsev, N.G., and Remezov, A.V., Research of Events due to Rock Pressure in Bottom-Up Inclined Slicing of Thick Gently dipping Coalbed in a Mine, Vestn. KGTU, 2011, no. 6.

  13. Torro, V.O., Serdobintsev, N.G., and Remezov, A.V., Analysis of Events due to Rock Pressure in Thick Gently dipping Coal Mining with Top-Downward Room-and-Pillar Method, Vestn. KGTU, 2012, no. 3(91).

  14. Remezov, A.V. and Torro, V.O., Relevance of Intellectual Systems for Next-Level Control of Flow Processes to Ensure Safe Underground Coal Mining, Proc. 3rd Int. Conf. on the Current Trends and Innovation in Science and Industry, Mezhdurechensk, 2014.

    Google Scholar 

  15. Torro, V.O. and Remezov, A.V., Design of Flow Processes for Bottom-Up Inclined Slicing of Thick Gently dipping Coal Beds, Proc. 2nd Int. Conf., Ufa: RIO ITsIP, 2014.

    Google Scholar 

  16. Ordin, A.A. and Metel’kov, A.A., Optimization of the Fully Mechanized Stoping Face Length and Efficiency in a Coal Mine, J. Min. Sci., 2013, vol. 49, no. 2, pp. 254–264.

    Article  Google Scholar 

  17. Ordin, A.A., Timoshenko, A.M., and Kolenchuk, S.A., Ultimate Length and Capacity of Production Heading with Regard to Gas Content, Considering Nonuniform Air Flow, J. Min. Sci., 2015, vol. 51, no. 4, pp. 771–778.

    Google Scholar 

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Correspondence to V. O. Torro.

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Original Russian Text © V.O. Torro, V.P. Tatsienko, A.V. Remezov, 2015, published in Fiziko-Tekhnicheskie Problemy Razrabotki Poleznykh Iskopaemykh, 2015, No. 5, pp. 15–22.

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Torro, V.O., Tatsienko, V.P. & Remezov, A.V. Analysis of ventilation of working areas in thick gently dipping coalbeds. J Min Sci 51, 873–878 (2015). https://doi.org/10.1134/S1062739115050027

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  • DOI: https://doi.org/10.1134/S1062739115050027

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