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- W2078833451 abstract "Abstract This article addresses numerical modeling of coupled heat conduction and radiation in mineral wools under steady-state condition for prediction of its effective thermal conductivity. The radiative heat transfer is modeled using the Monte Carlo Ray-Trace Method. The radiation model is based on a random distribution of fibers in the media. The radiation distribution factor is employed in order to compute the fraction of the total radiation emitted from one fiber that is absorbed by another, due to both direct radiation and to all possible reflections within the enclosure. The radiation model is coupled with the nonlinear heat conduction equation. The results obtained by the proposed model compare well with experimental measurements of the heat flow meter apparatus. The method is easy to code, and the number of calculations during each iteration is considerably reduced. Acknowledgments Sohrab Veiseh received his master's degree in mining engineering from the University of Tehran in 1987. He is currently a Ph.D. candidate in the Department of Mining Engineering at the same university. His research work includes thermophysical properties of fibrous materials, the use of numerical and analytical methods for solving direct heat transfer problems, as well as computational and experimental studies in mineral fiber insulation. He is also an active board member of the Building and Housing Research Center, Tehran, Iran. Ali Hakkaki-Fard received his B.Sc. at the University of Mazandaran, Iran, in 2004, and his M.Sc. from the University of Tehran in 2006 in mechanical engineering. His research areas of interest include the use of numerical and analytical methods of solution of the heat transfer problems, direct simulation of thermal systems, solution of inverse heat transfer problems, and optimization of thermal systems. Currently he is a fluid mechanics lab instructor in the School of Mechanical Engineering, University of Tehran, and a researcher with the Building and Housing Research Center, Tehran, Iran." @default.
- W2078833451 created "2016-06-24" @default.
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- W2078833451 date "2009-05-01" @default.
- W2078833451 modified "2023-09-25" @default.
- W2078833451 title "Numerical Modeling of Combined Radiation and Conduction Heat Transfer in Mineral Wool Insulations" @default.
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- W2078833451 doi "https://doi.org/10.1080/01457630802529065" @default.
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