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Optimizing arrangement of air distribution controllers in mine ventilation system

  • Mine Aerogasdynamics
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Abstract

The authors report the research results on the upgrading of the automated design planning of the underground mine ventilation system by using modern mathematical methods with the discussion of the perspective application of the genetic methods to analyze alternative ventilation systems at the design stage. The integrated variants of the optimized number of auxiliary fans and brattices, their arrangement and parameters at new Olenii Ruchey and Partomchorr mines.

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References

  1. Tyan, R.B. and Potemkin, V.Ya., Upravlenie provetrivaniem shakht (Control of Mine Ventilation Management), Kiev: Naukova dumka, 1977.

    Google Scholar 

  2. Kazakov, B.P., Kruglov, Yu.V., Isaevich, A.G., and Levin, L.Yu., Development of Aeroset’ Computer Complex for Design Planning of Air Shafts and Mines, Gorn. Inform.-Analit. Byull. 2006, no. 3.

  3. Nazarenko, V.I., Pochtarenko, N.S., and Turuta, I.A., REVOD Software to Calculate Air and Gas Distribution in the Mine Ventilation Network, Izv. DGU, 1999, no. 1.

  4. Kozyrev, S.A. and Osintseva, A.V., Automation of the Underground Mine Ventilation System, Vestn. MGTU, 2009, no. 4.

  5. Wasserman, A.D., Proektnye obosnovaniya parametrov ventilyatsii rudnikov i podzemnykh sooruzhenii (Design Substantiation of Ventilation Specifications for Mines and Underground Structures), Leningrad: Nauka, 1974.

    Google Scholar 

  6. Alekhichev, S.P. and Wasserman, A.D., Vozdukhoraspredelenie v rudnikakh s zonami obrusheniya (Air Distribution in Mines with Caved Areas), Leningrad: Nauka, 1973.

    Google Scholar 

  7. Davydov, E.G., Gabaidulin, R.I., and Chekhovskikh, A.M., The Proportional Belt Resistance Method to Calculate the Preset Air Distribution in the Ventilation Network, Izv. vuzov, Gorny Zh., 1992, no. 2.

  8. Emel’yanov, V.V., Kureichik, V.V., and Kureichik, V.M., Teoriya i praktika evolyutsionnogo modelirovaniya (Theory and Practice of Evolution Modeling), Moscow: Fizmatlit, 2003.

    Google Scholar 

  9. Boulos, P., Optimal Pump Operation of Water Distribution Systems Using Genetic Algorithms, Proc. AWWA Conf., Seattle: WA, 2000.

    Google Scholar 

  10. Lowndes, I.S., Fogarty, T., and Yang, Z.Y., The Application of Genetic Algorithms to Optimize the Performance of a Mine Ventilation Network: the Influence of Coding Method and Population Size, Soft Comput., 2005, no. 9.

  11. Osintseva, A.V. and Kozyrev, S.A., Substantiation of the Cost-Effective Variants of the Control of the Underground Mine Ventilation and Optimization of the Controller Specifications by Using the Genetic Algorithm, Vest. MGTU, 2011, vol. 14, no. 3.

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Correspondence to S. A. Kozyrev.

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Original Russian Text © S.A. Kozyrev, A.V. Osintseva, 2012, published in Fiziko-Tekhnicheskie Problemy Razrabotki Poleznykh Iskopaemykh, 2012, No. 5, pp. 135–143.

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Kozyrev, S.A., Osintseva, A.V. Optimizing arrangement of air distribution controllers in mine ventilation system. J Min Sci 48, 896–903 (2012). https://doi.org/10.1134/S1062739148050140

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  • DOI: https://doi.org/10.1134/S1062739148050140

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