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Cheng, J. Assessment of Mine Ventilation System Reliability Using Random Simulation Method, Paper accepted byEnvironmental Engineering and Management Journal, 2013.
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Cheng, J. Zhou, F. and Yang, S. A Reliability Allocation Model and Application in Designing Mine Ventilation System, Paper accepted by Iranian Journal of Science and Technology, 2013.
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Cheng, J. Luo, Y. and Zhou, F.Explosibility Safety Factor – An Approach to Assess Mine Gas Explosion Risk. Paper accepted by Fire Technology, 2013.
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Zhou, F., Shi, B., Liu, Y., Song, X., Cheng, J. and Hu, S. Coating material of air sealing in coal mine: Clay composite slurry (CCS), Paper accepted by Applied Clay Science, 2013.
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Zhou, F., Shi, B., Cheng, J. and Ma, L. A new approach to control a serious mine fire with using liquid nitrogen as extinguishing media, Paper accepted by Fire Technology, 2013.
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Zhou, F., Wei, L., Chen, K. and Cheng, J. Analyses of cascading failure in mine ventilation system and its effects in a serious mine gas explosion disaster, Paper accepted by Journal of Failure Analysis and Preventation,2013.
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Cheng, J. and Luo, Y. Modified Coward Diagram Method for Determining Mine Gas Explosibility. Journal of Loss Prevention in the Process Industries, 2013, 26(4): 714~722.
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Cheng, J., Wang, C. andZhang, S. Methods to determine the mine gas explosibility. Journal of Loss Prevention in the Process Industries, 2012, 25(3): 425-435.
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Luo, Y., Xiao, L., Cheng, J. and Li, M. Locating and Determining the Status of a Thermal Event in Longwall Panel Using Mine Atmosphere Monitoring Data. 2012 Transactions of the Society for Mining, Metallurgy and Exploration, Vol. 332, pp. 485-493.
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Cheng, J. and Yang S. Improved Coward Explosive Triangle for Determining Explosibility of Mixture Gas. Process Safety and Environmental Protection, 2011, 89(2): 89-94.
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Luo, Y. and Cheng, J. Simplifying ventilation network solutions in MEMC systems in U.S. coal mines. Mining Engineering, 2011, 63(2) :47-52.
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Cheng, J., Yang S. and Cheng, T. An overview of Mine Refuge Chamber and its Challenges in China. Coal Science and Technology, 2010, 38(11): 93-96 (in Chinese).
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Cheng, J. and Yang S.A Comprehensive Evaluation Model for Mine Ventilation System Based on Gray Cluster Analysis and Fuzzy Theory. Mining Safety & Environmental Protection, 2009, 36(1): 26-28 (in Chinese).
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Luo, Y. and Cheng, J. An influence function method based subsidence prediction program for longwall mining operations in inclined coal seams. Mining Science and Technology, 2009, 19(5): 592-598.
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Cheng, J. Yang, S. and Zhang, Z. Determination of Maximum Coal Production for a Longwall Working Face by Using Temperature Checking Method.Coal Science and Technology, 2007, 35(5): 14-17 (in Chinese).
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Cheng, J. and Yang, S. A Comprehensive Evaluation Model for Ventilation Effects of a Longwall Working Face.China Safety Science Journal, 2007, 17(5): 156-161(in Chinese).
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Yang, S., Ou, X. and Cheng, J. Micro-climate evaluation system in thermal mines. Journal of China University of Mining and Technology,2006, 16(1): 1- 4.
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Cheng, J. and Yang S. Data Mining Applications in Evaluating Mine Ventilation System.Safety Science, 2012, 50(4): 918-922.
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Zhang, S., Yang, S. and Cheng, J. Study on Relationships between Coal Fractal Characteristics and Coal and Gas Outburst.Procedia Engineering, 2011, 26: 327-334.
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Cheng, J., Yang S. and Luo,Y. Mathematical Models for Optimizing and Evaluating Mine Ventilation System, Proc. 13th United States/North American Mine Ventilation Symposium, Ed. S. Hardcastle and D. McKinnon, Laurentian University, Sudbury, Canada, 2010, 278-285.
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Luo, Y., Kimutis R., Yang K. and Cheng, J. Mitigation of Longwall Subsidence Effects on Operating Railroad.Proceedings - 29th International Conference on Ground Control in Mining, ICGCM, Ed. S. Peng, West Virginia University, Morgantown, 2010, 89-96.