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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 68, 2015 - Issue 8
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Original Articles

Reconstruction of Temperature Distribution in the Combustion Region of a Non-Gray Medium

, &
Pages 908-924 | Received 09 Jun 2014, Accepted 15 Jan 2015, Published online: 05 Jun 2015

REFERENCES

  • A. Namjoo, S. M. Hosseini Sarvari, A. Behzadmehr, and S. H. Mansouri Inverse Radiation Problem of Temperature Distribution in One-Dimensional Isotropically Scattering Participating Slab with Variable Refractive Index, J. Quant. Spectrosc. Radiat. Transfer, vol. 110, pp. 491–505, 2009.
  • Y. Yousefian, M. Sakami, and M. Lallemand Recovery of Temperature and Species Concentration Profiles in Flames Using Low-Resolution Infrared Spectroscopy, ASME J. Heat Transfer, vol. 121, pp. 268–279, 1999.
  • L. H. Liu and J. Jiang Inverse Radiation Problem for Reconstruction of Temperature Profile in Axisymmetric Free Flames, J. Quant. Spectrosc. Radiat. Transfer, vol. 70, pp. 207–215, 2001.
  • L. H. Liu and B. X. Li Inverse Radiation Problem of Axisymmetric Turbulent Sooting Free Flame, J. Quant. Spectrosc. Radiat. Transfer, vol. 75, pp. 481–491, 2002.
  • H. K. Kim and T. H. Song Measurement of Gas Temperature Distributions in a Test Furnace Using Spectral Remote Sensing, J. Quant. Spectrosc. Radiat. Transfer, vol. 73, pp. 517–528, 2002.
  • H. K. Kim and T. H. Song Characteristics of SRS Inversion for Measurement of Temperature and CO2 Concentration Profile of a Combustion Gas Layer, J. Quant. Spectrosc. Radiat. Transfer, vol. 86, pp. 181–199, 2004.
  • H. K. Kim and T. H. Song Determination of the Gas Temperature Profile in a Large-Scale Furnace Using a Fast/Efficient Inversion Scheme for the SRS Technique, J. Quant. Spectrosc. Radiat. Transfer, vol. 93, pp. 369–381, 2005.
  • J. Y. Ko, H. K. Kim, and T. H. Song Inversion of Combustion Gas Temperature/Concentration Profile With Radiation/Turbulence Interaction Using SRS, J. Quant. Spectrosc. Radiat. Transfer, vol. 110, pp. 1199–1206, 2009.
  • M. Cui, X. Gao, and H. Chen A New Inverse Approach for the Equivalent Gray Radiative Property of a Non-Gray Medium Using a Modified Zonal Method and the Complex-Variable-Differentiation Method, J. Quant. Spectrosc. Radiat. Transfer, vol. 112, pp. 1336–1342, 2011.
  • H. C. Zhou, Y. B. Hou, D. L. Chen, and C. G. Zheng An Inverse Radiative Transfer Problem of Simultaneously Estimating Profiles of Temperature and Radiative Parameters From Boundary Intensity and Temperature Measurements, J. Quant. Spectrosc. Radiat. Transfer, vol. 74, pp. 605–620, 2002.
  • H. C. Zhou, S. D. Han, S. Feng, and C. G. Zheng Visualization of Three-Dimensional Temperature Distributions in a Large Scale Furnace Via Regularized Reconstruction From Radiative Energy Images: Numerical Studies, J. Quant. Spectrosc. Radiat. Transfer, vol. 72, pp. 361–383, 2002.
  • S. Payan, S. M. Hosseini Sarvari, and A. Behzadmehr Inverse Estimation of Temperature Profile in a Non-Gray Medium with Soot Particles between Two Parallel Plates, Numer. Heat Transfer A, vol. 63, pp. 31–54, 2013.
  • S. Payan, S. M. Hosseini Sarvari, and A. Behzadmehr Inverse Boundary Design Radiation Problem within Combustion Enclosures with Absorbing-Emitting Non-Gray Media, Numer. Heat Transfer A, vol. 65, pp. 1114–1137, 2014.
  • L. H. Liu, H. P. Tan, and Q. Z. Yu Inverse Radiation Problem of Temperature Field in Three Dimensional Rectangular Furnaces, Int. Commun. Heat Mass Transfer, vol. 26, pp. 239–248, 1999.
  • L. H. Liu and H. P. Tan Inverse Radiation Problem in Three-Dimensional Complicated Geometric Systems With Opaque Boundaries, J. Quant. Spectrosc. Radiat. Transfer, vol. 68, pp. 559–573, 2001.
  • D. Liu, F. Wang, J. H. Yan, Q. X. Huang, Y. Chi, and K. F. Cen Inverse Radiation Problem of Temperature Field in Three-Dimensional Rectangular Enclosure Containing Inhomogeneous, Anisotropically Scattering Media, Int. J. Heat Mass Transfer, vol. 51, pp. 3434–4341, 2008.
  • H. C. Zhou, S. D. Han, F. Sheng, and C. G. Zheng Visualization of Three-Dimensional Temperature Distributions in a Large-Scale Furnace Via Regularized Reconstruction from Radiative Energy Images: Numerical Studies, J. Quant. Spectrosc. Radiat. Transfer, vol. 72, pp. 361–383, 2002.
  • H. C. Zhou, C. Lou, Q. Cheng, Z. W. Jiang, J. He, and B. Y. Huang Experimental Investigations on Visualization of Three-Dimensional Temperature Distributions in a Large-Scale Pulverized-Coal-Fired Boiler Furnace, Proc. Combust. Inst., vol. 30, pp. 1699–1706, 2005.
  • Y. Huang, Y. Yan, and G. Riley Vision-Based Measurement of Temperature Distribution in a 500 kW Model Furnace Using the Two-Colour Method, Measurement, vol. 28, pp. 175–183, 2000.
  • G. Lu, Y. Yan, G. Riley, and H. C. Bheemul Concurrent Measurement of Temperature and Soot Concentration of Pulverized Coal Flames, IEEE Trans. Instrum. Meas., vol. 51, pp. 990–995, 2002.
  • P. M. Brisley, G. Lu, Y. Yan, and S. Cornwell Three-Dimensional Temperature Measurement of Combustion Flames Using a Single Monochromatic CCD Camera, IEEE Trans. Instrum. Meas., vol. 54, pp. 1417–1421, 2005.
  • P. Molcan, G. Lu, T. L. Bris, Y. Yan, B. Taupin, and B. Caillat Characterisation of Biomass and Coal Co-Firing on a 3 MWth Combustion Test Facility Using Flame Imaging and Gas/Ash Sampling Techniques, Fuel, vol. 88, pp. 2328–2334, 2009.
  • J. Smart, G. Lu, Y. Yan, and G. Riley Characterisation of an Oxy-Coal Flame through Digital Imaging, Combust. Flame, vol. 157, pp. 1132–1139, 2010.
  • V. Goutiere, F. Liu, and A. Charette An Assessment of Real-Gas Modeling in 2-D Enclosures, J. Quant. Spectrosc. Radiat. Transfer, vol. 46, pp. 299–326, 2000.
  • M. F. Modest Radiative Heat Transfer, 2nd ed., McGraw-Hill, New York, 2003.
  • M. K. Denison A Spectral Line-Based Weighted-Sum-of-Gray-Gases Model for Arbitrary RTE Solvers, Ph.D. thesis, Brigham Young University, Department of Mechanical Engineering, Utah, 1994.
  • M. N. Ozisik and H. R. B Orlande Inverse Heat Transfer, 2nd ed., Taylor and Francis, New York, 2000.

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