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Effects of Contact Resistance on Heat Transfer Behaviors of Fibrous Insulation
Authors:Zhao Shuyuan  Zhang Boming  Du Shanyi
Institution:Center for Composite Materials and Structure, Harbin Institute of Technology, Harbin 150080, China
Abstract:In this article, a numerical model combining conduction and radiation is developed based on two flux approximation to predict the heat transfer behavior of fibrous insulation used in thermal protection systems. Monte Carlo method is utilized to determine the modified radiative properties with experimentally measured transient external temperature as high as 1 000 K. It is found that the estimated radiative properties become time-independent after about t = 3 000 s. By comparing the predicted to the measured results in transient state, the contact resistance exerts significant influences upon the temperature distribution in the specimen. Results show that the averaged absolute deviation is 3.25% when contact resistance is neglected in heat transfer model, while 1.82% with no contact resistance.
Keywords:heat transfer  Monte Carlo methods  radiative properties  effective thermal conductivity  contact resistance
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