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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 59, 2011 - Issue 8
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Original Articles

Diluted Air Combustion and NOx Emission in a HiTAC Furnace

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Pages 633-651 | Received 22 Dec 2010, Accepted 24 Jan 2011, Published online: 20 Apr 2011

REFERENCES

  • T. Hasegawa , S. Mochida , and A. K. Gupta , Development of Advanced Industrial Furnace Using Highly Preheated Air Combustion , AIAA J. Propulsion Power , vol. 2 , pp. 233 – 239 , 2002 .
  • J. A. Wünning and J. G. Wünning , Flameless Oxidation to Reduce Thermal NO Formation , Progr. Energy Combust. Sci. , vol. 23 , pp. 81 – 94 , 1997 .
  • A. Cavaliere and M. de Joannon , Mild Combustion, Progr. Energy Combust. Sci. , vol. 30, pp. 329–366, 2004.
  • R. Fuse , H. Kobayashi , Y. Ju , K. Maruta , and T. Niioka , NOx Emission from High- Temperature Air/Methane Counterflow Diffusion Flame , Int. J. Therm. Sci. , vol. 41 , pp. 693 – 698 , 2002 .
  • B. B. Dally , E. Riesmeier , and N. Peters , Effect of Fuel Mixture on Moderate and Intense Low Oxygen Dilution Combustion , Combust. Flame , vol. 137 , pp. 418 – 31 , 2004 .
  • N. Rafidi and W. Blasiak , Heat Transfer Characteristics of HiTAC Heating Furnace Using Regenerative Burners , Appl. Therm. Eng. , vol. 26 , pp. 2027 – 2034 , 2006 .
  • A. K. Gupta , High Temperature Air Combustion: Energy Savings, Pollution Reduction, and Fuel Reforming, Proc. 5th Mediterranean Symposium on Combustion, The Combustion Institute, Monastir, Tunisia, 2007.
  • T. Gassoumi , K. Guedri , and R. Said , Numerical Study of the Swirl Effect on a Coaxial Jet Combustor Flame Including Radiative Heat Transfer , Numer. Heat Transfer A , vol. 56 , pp. 897 – 913 , 2009 .
  • S. Z. Shuja , B. S. Yilbas , and M. O. Budair , Gas Jet Impingement on a Surface Having a Limited Constant Heat Flux Area: Various Turbulence Models , Numer. Heat Transfer A , vol. 36 , pp. 171 – 200 , 1999 .
  • S. Lille , W. Blasiak , and M. Jewartowski , Experimental Study of the Fuel Jet Combustion in High Temperature and Low Oxygen Content Exhaust Gases , Energy , vol. 30 , pp. 373 – 384 , 2005 .
  • W. Yang and W. Blasiak , Combustion Performance and Numerical Simulation of a High Temperature Air-LPG Flame on a Regenerative Burner , Scand. J. Metallurgy , vol. 33 , pp. 113 – 120 , 2004 .
  • C. P. Cho , S. Jo , H. Y. Kim , and S. S. Yoon , Numerical Studies on Combustion Characteristics of Interacting Pulverized Coal Particles at Various Oxygen Concentration , Numer. Heat Transfer A , vol. 52 , pp. 1101 – 1122 , 2007 .
  • S. Lee , S. W. Baek , M. Y. Kim , and Y. M. Sohn , Numerical Investigation of the Combustion Characteristics and Nitric Oxide Formation in a Municipal Waste Incinerator , Numer. Heat Transfer A , vol. 52 , pp. 713 – 735 , 2007 .
  • M. Rahimi , A. Khoshhal , and S. M. Shariati , CFD Modeling of a Boiler's Tubes Rupture , Appl. Therm. Eng. , vol. 26 , pp. 2192 – 2200 , 2006 .
  • S. Jo , H. Y. Kim , and S. S. Yoon , Numerical Investigation on the Effects of Inlet air Temperature on Spray Combustion in a Wall Jet Can Combustor Using the k–ϵ Turbulence Model , Numer. Heat Transfer A , vol. 55 , pp. 1101 – 1120 , 2008 .
  • A. Khoshhal , M. Rahimi , and A. A. Alsairafi , CFD Investigation on the Effect of Air Temperature on Air Blowing Cooling System for Preventing Tube Rupture , Int. Comm. Heat Mass Transfer , vol. 36 , pp. 750 – 756 , 2009 .
  • Z. Li , J. Jing , Z. Ge , G. Liu , Z. Chen , and F. Ren , Numerical Simulation of Low NOx Combustion Technology in a 100 MW Bituminous Coal-Fired Wall Boiler , Numer. Heat Transfer A , vol. 55 , pp. 574 – 593 , 2009 .
  • A. Khoshhal , M. Rahimi , and A. A. Alsairafi , The CFD Modeling of NOx Emission, HiTAC and Heat Transfer in an Industrial Boiler , Numer. Heat Transfer A , vol. 58 , pp. 295 – 312 , 2010 .
  • P. C. Melte and D. T. Pratt , Measurement of Atomic Oxygen and Nitrogen Oxides in Jet Stirred Combustion, Proc. 15th Int. Symposium on Combustion, The Combustion Institute, pp. 1061–1070, Tokyo, Japan, 1974.
  • P. Glarborg , J. E. Johnsson , and K. Dam-Johansen , Kinetics of Homogeneous Nitrous Oxide Decomposition , Combust. Flame , vol. 99 , pp. 523 – 532 , 1994 .
  • C. Galletti , A. Parente , M. Derudi , R. Rota , and L. Tognotti , Numerical and Experimental Analysis of NO Emissions from a Lab-Scale Burner Fed with Hydrogen-Enriched Fuels and Operating in MILD Combustion , Int. J. Hydrogen Energ. , vol. 34 , pp. 8339 – 8351 , 2009 .
  • R. C. Steele , P. C. Malte , D. G. Nichol , and J. C. Kramlich , NOx and N2O in Lean-Premixed Jet-Stirred Flames, Combust. Flame , vol. 100, pp. 440–449, 1995.
  • FLUENT, Inc., FLUENT 6.2 User's Guide, 2005.
  • B. E. Launder and D. B. Spalding , The Numerical Computation of Turbulent Flows , Comp. Meth. Appl. Mech. Eng. , vol. 3 , pp. 269 – 289 , 1974 .
  • E. H. Chui and G. D. Raithby , Computation of Radiant Heat Transfer on a Nonorthogonal Mesh Using the Finite-Volume Method , Numer. Heat Transfer B , vol. 23 , pp. 269 – 288 , 1993 .
  • B. F. Magnussen , On the Structure of Turbulence and a Generalized Eddy Dissipation Concept for Chemical Reaction in Turbulent Flow, Proc. 19th AIAA Aerospace Science Meeting , Missouri , USA , 1981 .
  • S. Orsino , R. Weber , and U. Bollettini , Numerical Simulation of Combustion of Natural Gas with High-Temperature Air , Combust. Sci. Tech. , vol. 168 , pp. 1 – 34 , 2002 .
  • F. C. Christo and B. B. Dally , Modeling Turbulent Reacting Jets Issuing Into a Hot and Diluted Coflow , Combust. Flame , vol. 142 , pp. 117 – 129 , 2005 .
  • D. L. Baulch , D. D. Drysdall , and D. G. Horne , Evaluated Kinetic Data for High Temperature Reactions , Butterworth , UK , 1973 .
  • C. Westbrook and F. Dryer , Chemical Kinetic Modelling of Hydrocarbon Combustion , Prog. Energy Comb. Sci. , vol. 10 , pp. 1 – 57 , 1984 .
  • G. G. De Soete , Overall Reaction Rates of NO and N2 Formation from Fuel Nitrogen, Proc. 15th Int. Symp. on Combustion, The Combustion Institute, pp. 1093–1102, Tokyo, Japan, 1975.
  • G. Loffler , V. J. Wargadalam , F. Winter , and H. Hofbauer , Decomposition of Nitrous Oxide at Medium Temperatures , Combust. Flame , vol. 120 , pp. 427 – 438 , 2000 .
  • C. E. Baukal and P. B. Eleazer , Quantifying NOx for Industrial Combustion Processes , J. Air Waste Manag. Assoc. , vol. 48 , pp. 52 – 58 , 1998 .
  • T. Peeters , Numerical Modeling of Turbulence Natural-Gas Diffusion Flames. Ph.d. thesis, Delft Technical University, Delft, The Netherlands, 1995.
  • P. Glarborg , D. Kubel , K. Dam-Johansen , H. M. Chiang , and J. W. Bozzelli , Impact of SO2 and NO on CO Oxidation Under Post-Flame Conditions , Int. J. Chem. Kinet. , vol. 28 , pp. 773 – 790 , 1996 .
  • P. Glarborg , M. U. Alzueta , K. Dam-Johansen , and J. A. Miller , Kinetic Modeling of Hydrocarbon/Nitric Oxide Interactions in a Flow Reactor , Combust. Flame , vol. 115 , pp. 1 – 27 , 1998 .

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