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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 52, 2007 - Issue 12
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Original Articles

Numerical Studies on Combustion Characteristics of Interacting Pulverized Coal Particles at Various Oxygen Concentration

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Pages 1101-1122 | Received 22 Oct 2006, Accepted 09 Mar 2007, Published online: 19 Sep 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Tien-Mo Shih, Martinus Arie & Derrick Ko. (2011) Literature Survey of Numerical Heat Transfer (2000–2009): Part II. Numerical Heat Transfer, Part A: Applications 60:11-12, pages 883-1096.
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Abbas Khoshhal, Masoud Rahimi & Ammar Abdulaziz Alsairafi. (2011) Diluted Air Combustion and NOx Emission in a HiTAC Furnace. Numerical Heat Transfer, Part A: Applications 59:8, pages 633-651.
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Aldélio Bueno Caldeira & FernandoF. Fachini. (2010) Nonunitary Lewis Number Effects on the Combustion of a Linear Array of Gaseous Fuel Pockets. Numerical Heat Transfer, Part A: Applications 58:10, pages 784-801.
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Aldélio Bueno Caldeira, Albino José Kalab Leiroz & Helcio Rangel Barreto Orlande. (2008) Interaction Effects During Combustion of Linear Arrays of Gaseous Fuel Pockets. Numerical Heat Transfer, Part A: Applications 54:12, pages 1085-1100.
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Articles from other publishers (14)

Chaojun Wang, Di He, Boshu He, Yucheng Kuang & Qiang Ren. (2023) Multiphase Radiation Characteristics of a Laboratory-Scale Pulverized Coal Flame. Journal of Thermophysics and Heat Transfer 37:2, pages 477-490.
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Nozomu Hashimoto & Jun Hayashi. (2021) Coal Particle Devolatilization and Soot Formation in Pulverized Coal Combustion Fields. KONA Powder and Particle Journal 38:0, pages 168-188.
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Lele Feng, Yuxin Wu, Kailong Xu, Hai Zhang & Yang Zhang. (2020) Effect of particle distance on combustion behaviors through 1-D model with Neumann boundary condition. Fuel 276, pages 117974.
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Ozlem Uguz, Hanzade Haykiri-Acma & Serdar Yaman. (2020) Burning Resistance of Lignitic Coals Under Oxygen-Enriched Conditions. Journal of Energy Resources Technology 142:8.
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Jiangkuan Xing, Yun Bai, Chunguang Zhao, Zhengwei Gao & Haiou Wang. (2018) Numerical Studies of Coal Devolatilization Characteristics with Gas Temperature Fluctuation. Energy & Fuels 32:8, pages 8760-8767.
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Romain Lemaire, Delphine Menage & Patrice Seers. (2017) Study of the high heating rate devolatilization of bituminous and subbituminous coals—Comparison of experimentally monitored devolatilization profiles with predictions issued from single rate, two-competing rate, distributed activation energy and chemical percolation devolatilization models. Journal of Analytical and Applied Pyrolysis 123, pages 255-268.
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R. Lemaire, C. Bruhier, D. Menage, E. Therssen & P. Seers. (2015) Study of the high heating rate devolatilization of a pulverized bituminous coal under oxygen-containing atmospheres. Journal of Analytical and Applied Pyrolysis 114, pages 22-31.
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R. Lemaire, D. Menage, S. Menanteau & J.-L. Harion. (2014) Experimental study and kinetic modeling of pulverized coal devolatilization under air and oxycombustion conditions at a high heating rate. Fuel Processing Technology 128, pages 183-190.
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Yonmo Sung, Cheoreon Moon, Seongyool Ahn, Gyungmin Choi & Duckjool Kim. (2012) Experimental study on interaction and excess heat release under oxy-fuel combustion of blended coals. Korean Journal of Chemical Engineering 30:2, pages 337-344.
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Nozomu Hashimoto, Ryoichi Kurose & Hiromi Shirai. (2012) Numerical simulation of pulverized coal jet flame employing the TDP model. Fuel 97, pages 277-287.
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Nozomu Hashimoto, Ryoichi Kurose, Seung-Min Hwang, Hirofumi Tsuji & Hiromi Shirai. (2012) A numerical simulation of pulverized coal combustion employing a tabulated-devolatilization-process model (TDP model). Combustion and Flame 159:1, pages 353-366.
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Abbas Khoshhal, Masoud Rahimi & Ammar Abdulaziz Alsairafi. (2011) CFD study on influence of fuel temperature on NOx emission in a HiTAC furnace. International Communications in Heat and Mass Transfer 38:10, pages 1421-1427.
Crossref
H. Haykiri-Acma, A.Z. Turan, S. Yaman & S. Kucukbayrak. (2010) Controlling the excess heat from oxy-combustion of coal by blending with biomass. Fuel Processing Technology 91:11, pages 1569-1575.
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. (2008) . Journal of the Japan Institute of Energy 87:8, pages 649-650.
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