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The results show that a relatively simple heat conduction analysis of the problem can yield acceptable accuracy.
The non-Fourier heat conduction analysis of infinite 2D functionally graded (FG) hollow cylinders subjected to time-dependent heat source is presented.
This method is implemented for the heat conduction analysis of functionally graded materials (FGMs) with non-homogenous and/or temperature dependent heat sources.
All authors substantially contributed to the study, with regards to design, conduction, analysis of the results and/or manuscript preparation.
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For the heat conduction analysis and comparison of the temperature profile of pure metal-ceramic and metal matrix carbon nanotube-ceramic, the differential quadrature method was utilized to solve the transient equations as a précised numerical method with high capability of convergence.
Ying Huang, Yingmei Fu, and Fengmin Zhang participated in the design, conduction, analysis, and interpretation of the study.
YF and FZ participated in the design, conduction, analysis and interpretation of the study.
A transient inverse heat conduction analysis enables the identification of the unknown boundary heat flux from finite number of temperature data obtained, e.g., in the high temperature structural tests or in the actual operation.
The present study develops a computational method of transient inverse heat conduction analysis.
This work explores the application of coupled numerical models in thermal conduction analysis, taking into account frequency domain formulations.
The availability and accuracy of the present method for transient heat conduction analysis are tested through numerical examples.
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