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Numerical Heat Transfer, Part B: Fundamentals
An International Journal of Computation and Methodology
Volume 30, 1996 - Issue 4
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Original Articles

IMPLEMENTATION OF THE WEIGHTED SUM OF GRAY GASES MODEL TO A NARROW BAND: APPLICATION AND VALIDITY

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Pages 453-468 | Received 14 Sep 1995, Accepted 20 May 1996, Published online: 25 Apr 2007

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Ashkan Hosseini, Vinod Dhiman, Koen Meijer, Christiaan Zeilstra, Johannes Hage, Tim Peeters, Erik Offerman & Yongxiang Yang. (2022) CFD modelling of the off-gas system of HIsarna iron making process. Part 1: model development using detailed reaction mechanism for post-combustion of CO–H2 mixture and carbon particles. Ironmaking & Steelmaking 49:8, pages 828-844.
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Ji-Woong Park, Chang Bo Oh & Ook Joong Kim. (2013) Radiation Effects on the Flame Structure and Extinction Limit of Counterflow Methane Partially Premixed Flames Diluted with Water Vapor in the Air Stream. Combustion Science and Technology 185:9, pages 1306-1328.
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Rakesh Yadav, A. Kushari, AtulK. Verma & V. Eswaran. (2013) Weighted Sum of Gray Gas Modeling for Nongray Radiation in Combusting Environment Using the Hybrid Solution Methodology. Numerical Heat Transfer, Part B: Fundamentals 64:2, pages 174-197.
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Tae-Ho Song. (2008) Spectral Remote Sensing for Furnaces and Flames. Heat Transfer Engineering 29:4, pages 417-428.
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Mohamed Ammar Abbassi, Kamel Halouani, Mohamed-Sassi Radhouani & Habib Farhat. (2005) A PARAMETRIC STUDY OF RADIATIVE HEAT TRANSFER IN AN INDUSTRIAL COMBUSTOR OF WOOD CARBONIZATION FUMES. Numerical Heat Transfer, Part A: Applications 47:8, pages 825-847.
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Ook Jong Kim, Jay P. Gore, Raymond Viskanta & Xue Lei Zhu. (2003) PREDICTION OF SELF-ABSORPTION IN OPPOSED FLOW DIFFUSION AND PARTIALLY PREMIXED FLAMES USING A WEIGHTED SUM OF GRAY GASES MODEL (WSGGM)-BASED SPECTRAL MODEL. Numerical Heat Transfer, Part A: Applications 44:4, pages 335-353.
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Articles from other publishers (19)

Ashkan Hosseini, Johannes L. T. Hage, Koen Meijer, Erik Offerman & Yongxiang Yang. (2023) On the Importance of Model Selection for CFD Analysis of High Temperature Gas-Solid Reactive Flow; Case Study: Post Combustion Chamber of HIsarna Off-Gas System. Processes 11:3, pages 839.
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Bonchan Gu, Man Young Kim & Seung Wook Baek. (2019) Analysis of the IR Signature and Radiative Base Heating from a Supersonic Solid Rocket Exhaust Plume. International Journal of Aeronautical and Space Sciences 20:2, pages 423-432.
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Sang Hun Kang & Chun Sang Yoo. (2017) A modification of the narrow band-based WSGG regrouping method for computation time reduction in non-gray gas radiation analysis. International Journal of Heat and Mass Transfer 111, pages 1314-1321.
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Yongquan An & Yan Zhao. (2013) Infrared spectral radiative properties of high temperature gas with multi-component. Optik 124:23, pages 5885-5890.
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Rakesh Yadav, Abhijit Kushari, Vinayak Eswaran & Atul K. Verma. (2013) A numerical investigation of the Eulerian PDF transport approach for modeling of turbulent non-premixed pilot stabilized flames. Combustion and Flame 160:3, pages 618-634.
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Kyung-Beom Yoon, Hee-Chul Chang & Tae-Kuk Kim. (2010) Study on the radiative transfer through non-gray gas mixtures within an irregular 3-D enclosure by using the modified weighted sum of gray gas method. Journal of Mechanical Science and Technology 24:7, pages 1531-1536.
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Ju Yong Ko, Hyun Keol Kim & Tae-Ho Song. (2009) Inversion of combustion gas temperature/concentration profile with radiation/turbulence interaction using SRS. Journal of Quantitative Spectroscopy and Radiative Transfer 110:13, pages 1199-1206.
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Won-Hee Park & Tae-Kuk Kim. (2008) Numerical solution of radiative transfer within a cubic enclosure filled with nongray gases using the WSGGM. Journal of Mechanical Science and Technology 22:7, pages 1400-1407.
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Won-Hee PARK & Tae-Kuk KIM. (2005) Development of the WSGGM Using a Gray Gas Regrouping Technique for the Radiative Solution within a 3-D Enclosure Filled with Nonuniform Gas Mixtures. JSME International Journal Series B 48:2, pages 310-315.
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. (2003) Study on Regrouping of Gray Gases in spectral WSGGM for Arbitrary Mixtures of CO 2 and H 2 O Gases . Transactions of the Korean Society of Mechanical Engineers B 27:2, pages 227-235.
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Su-Wan Woo & Tae-Ho Song. (2002) Measurement of gas temperature profile using spectral intensity from CO2 4.3 μm band. International Journal of Thermal Sciences 41:9, pages 883-890.
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S.S Yang & T.H Song. (2000) Error analysis of spectral remote sensing by CO2 4.3μm band in various temperature profiles. Journal of Quantitative Spectroscopy and Radiative Transfer 66:4, pages 327-341.
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E.R.G. Eckert, R.J. Goldstein, W.E. Ibele, T.W. Simon, T.H. Kuehn, P.J. Strykowski, K.K. Tamma, A. Bar-Cohen, J.V.R. Heberlein, J.H. Davidson, J. Bischof, F. Kulacki & U. Kortshagen. (2000) Heat transfer — a review of 1996 literature. International Journal of Heat and Mass Transfer 43:8, pages 1273-1371.
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O.J Kim & T.H Song. (2000) Data base of WSGGM-based spectral model for radiation properties of combustion products. Journal of Quantitative Spectroscopy and Radiative Transfer 64:4, pages 379-394.
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Vincent Goutiere, Fengshan Liu & André Charette. (2000) An assessment of real-gas modelling in 2D enclosures. Journal of Quantitative Spectroscopy and Radiative Transfer 64:3, pages 299-326.
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Fengshan Liu, Gregory J. Smallwood & Omer L. Gulder. (1999) Application of Statistical Narrowband Model to Three-Dimensional Absorbing-Emitting-Scattered Media. Journal of Thermophysics and Heat Transfer 13:3, pages 285-291.
Crossref
Fengshan Liu, Gregory Smallwood & Omer Gulder. (1999) Radiation heat transfer calculations using the SNBCK method. Radiation heat transfer calculations using the SNBCK method.
Soo-Seok Yang & Tae-Ho Song. (1999) An improved WSGGM-based narrow band model for the CO2 4.3 μm band. International Journal of Thermal Sciences 38:3, pages 228-238.
Crossref
Fengshan Liu, Ömer.L. Gülder & Gregory J. Smallwood. (1998) Three-dimensional non-grey gas radiative transfer analyses using the statistical narrow-band model. Revue Générale de Thermique 37:9, pages 759-768.
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