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Original Articles

SELF-IGNITION AND CONVECTION PATTERNS IN AN INFINITE COAL LAYER

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Pages 255-278 | Received 25 Apr 1990, Accepted 26 Feb 1991, Published online: 15 Oct 2007

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Xingpan Zhu & Hu Wen. (2023) Application of multi-index grey target decision method in prediction of coal temperature in goaf. Combustion Science and Technology 0:0, pages 1-15.
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S.J. Zarrouk, M.J. O'Sullivan & J.D. St George. (2006) Modelling the spontaneous combustion of coal: the adiabatic testing procedure. Combustion Theory and Modelling 10:6, pages 907-926.
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Articles from other publishers (19)

Li Xiaomeng, Zhang Minbo, Zan Xiaoyan, Tan Bo & Gao Saiyi. (2023) Numerical-simulation study on the influence of wind speed and segregation effect on spontaneous combustion of coal bunker. Case Studies in Thermal Engineering 52, pages 103678.
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M. Onifade & B. Genc. (2020) A review of research on spontaneous combustion of coal. International Journal of Mining Science and Technology 30:3, pages 303-311.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 2017. Convection in Porous Media. Convection in Porous Media 241 361 .
Jian Zhang, Ting Ren, Yuntao Liang & Zhongwei Wang. (2016) A review on numerical solutions to self-heating of coal stockpile: Mechanism, theoretical basis, and variable study. Fuel 182, pages 80-109.
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Jian Zhang, Yuntao Liang, Ting Ren, Zhongwei Wang & Gongda Wang. (2016) Transient CFD modelling of low-temperature spontaneous heating behaviour in multiple coal stockpiles with wind forced convection. Fuel Processing Technology 149, pages 55-74.
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Jeannette Sieber. (2013) Impacts of, and adaptation options to, extreme weather events and climate change concerning thermal power plants. Climatic Change 121:1, pages 55-66.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 2013. Convection in Porous Media. Convection in Porous Media 221 329 .
A. Küçük, Y. Kadıoğlu & M.Ş. Gülaboğlu. (2003) A study of spontaneous combustion characteristics of a turkish lignite: particle size, moisture of coal, humidity of air. Combustion and Flame 133:3, pages 255-261.
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Xiao Dong Chen. (2009) Self-heating behaviour of low moisture content particles—modelling the basket-heating of solid particles and some aspects of the cross over behaviour using milk powder as an example. The ANZIAM Journal 43:1, pages 165-181.
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V Fierro, J.L Miranda, C Romero, J.M Andrés, A Arriaga & D Schmal. (2001) Model predictions and experimental results on self-heating prevention of stockpiled coals. Fuel 80:1, pages 125-134.
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B. Moghtaderi, B.Z. Dlugogorski & E.M. Kennedy. (2000) Effects of Wind Flow on Self-Heating Characteristics of Coal Stockpiles. Process Safety and Environmental Protection 78:6, pages 445-453.
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V Fierro, J.L Miranda, C Romero, J.M Andrés, A Arriaga, D Schmal & G.H Visser. (1999) Prevention of spontaneous combustion in coal stockpiles. Fuel Processing Technology 59:1, pages 23-34.
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Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 1999. Convection in Porous Media. Convection in Porous Media 261 319 .
Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 1999. Convection in Porous Media. Convection in Porous Media 175 260 .
Donald A. Nield & Adrian BejanDonald A. Nield & Adrian Bejan. 1999. Convection in Porous Media. Convection in Porous Media 23 31 .
X.D. Chen & J.B. Stott. (1997) Oxidation rates of coals as measured from one-dimensional spontaneous heating. Combustion and Flame 109:4, pages 578-586.
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Srinivasan Krishnaswamy, Pradeep K. Agarwal & Robert D. Gunn. (1996) Low-temperature oxidation of coal. 3. Modelling spontaneous combustion in coal stockpiles. Fuel 75:3, pages 353-362.
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Andrew G. Salinger, Rutherford Aris & Jeffrey J. Derby. (2004) Modeling the spontaneous ignition of coal stockpiles. AIChE Journal 40:6, pages 991-1004.
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Soh Young In, Berk Manav, Clothilde Venereau, Luis Enrique Cruz Rodriguez & John Weyant. (2021) Pricing Climate Risks of Energy Investments: A Comparative Case Study. SSRN Electronic Journal.
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