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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 44, 2003 - Issue 7
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Original Articles

A MULTIDIMENSIONAL RADIATION MODEL FOR DIESEL ENGINE SIMULATION WITH COMPARISON TO EXPERIMENT

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Pages 665-682 | Published online: 02 Feb 2011

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Tien-Mo Shih, Chandrasekhar Thamire, Chao-Ho Sung & An-Lu Ren. (2010) Literature Survey of Numerical Heat Transfer (2000–2009): Part I. Numerical Heat Transfer, Part A: Applications 57:3-4, pages 159-296.
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Articles from other publishers (15)

Michael F. Modest & Sandip Mazumder. 2022. Radiative Heat Transfer. Radiative Heat Transfer 819 858 .
Alberto Broatch, Xandra Margot, Jorge Garcia-Tiscar & Johan Escalona. Validation and Analysis of Heat Losses Prediction Using Conjugate Heat Transfer Simulation for an Internal Combustion Engine. Validation and Analysis of Heat Losses Prediction Using Conjugate Heat Transfer Simulation for an Internal Combustion Engine.
Chandan Paul, Sebastian Ferreyro Fernandez, Daniel C. Haworth, Somesh Roy & Michael F. Modest. (2019) A detailed modeling study of radiative heat transfer in a heavy-duty diesel engine. Combustion and Flame 200, pages 325-341.
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Zongyu Yue & Rolf D. Reitz. (2019) Numerical investigation of radiative heat transfer in internal combustion engines. Applied Energy 235, pages 147-163.
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C. Paul, D.C. Haworth & M.F. Modest. (2019) A simplified CFD model for spectral radiative heat transfer in high-pressure hydrocarbon–air combustion systems. Proceedings of the Combustion Institute 37:4, pages 4617-4624.
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Somesh P. Roy, Jian Cai & Michael F. Modest. (2017) Development of a multiphase photon Monte Carlo method for spray combustion and its application in high-pressure conditions. International Journal of Heat and Mass Transfer 115, pages 453-466.
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Michael F. Modest & Daniel C. HaworthMichael F. Modest & Daniel C. Haworth. 2016. Radiative Heat Transfer in Turbulent Combustion Systems. Radiative Heat Transfer in Turbulent Combustion Systems 137 148 .
M.A. Hadjipanayis, F. Beyrau, R.P. Lindstedt, G. Atkinson & L. Cusco. (2015) Thermal radiation from vapour cloud explosions. Process Safety and Environmental Protection 94, pages 517-527.
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Owais Iqbal, Kunal Arora & Manyam Sanka. (2014) Thermal Map of an IC Engine via Conjugate Heat Transfer: Validation and Test Data Correlation. SAE International Journal of Engines 7:1, pages 366-374.
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Yuanhong Li & Song-Charng Kong. (2011) Coupling conjugate heat transfer with in-cylinder combustion modeling for engine simulation. International Journal of Heat and Mass Transfer 54:11-12, pages 2467-2478.
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Takeshi Yoshikawa & Rolf D. Reitz. (2008) Development of an Improved NOx Reaction Mechanism for Low Temperature Diesel Combustion Modeling. SAE International Journal of Engines 1:1, pages 1105-1117.
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Takeshi YOSHIKAWA & Rolf D. REITZ. (2009) Effect of Radiation on Diesel Engine Combustion and Heat Transfer. Journal of Thermal Science and Technology 4:1, pages 86-97.
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David J. Torres & Mario F. Trujillo. (2006) KIVA-4: An unstructured ALE code for compressible gas flow with sprays. Journal of Computational Physics 219:2, pages 943-975.
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R.J. Goldstein, W.E. Ibele, S.V. Patankar, T.W. Simon, T.H. Kuehn, P.J. Strykowski, K.K. Tamma, J.V.R. Heberlein, J.H. Davidson, J. Bischof, F.A. Kulacki, U. Kortshagen, S. Garrick & V. Srinivasan. (2006) Heat transfer—A review of 2003 literature. International Journal of Heat and Mass Transfer 49:3-4, pages 451-534.
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James F. Wiedenhoefer & Rolf D. Reitz. Multidimensional Modeling of the Effects of Radiation and Soot Deposition in Heavy-duty Diesel Engines. Multidimensional Modeling of the Effects of Radiation and Soot Deposition in Heavy-duty Diesel Engines.

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