Details
Title
Investigation of Sensitivity of the Inverse Method Applied to Determination of the Thermal Conductivity of SteelsJournal title
Archives of Metallurgy and MaterialsYearbook
2000Issue
No 2Authors
Divisions of PAS
Nauki TechniczneCoverage
197-218Publisher
Institute of Metallurgy and Materials Science of Polish Academy of Sciences ; Committee of Materials Engineering and Metallurgy of Polish Academy of SciencesBibliography
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[3] W. J. Parker, R. J. Jenkins, C. P. Butler, G. L. Abbot, Flash Method of Determining Thermal Diffusivity, Heat Capacity, and Thermal Conductivity, Journal of Applied Physics 32, 9, 1679-1684 (1961).
[4] R. Cerny, J. Toman, A Difference Method for Determining the Thermal Conductivity of Porous Materials in a Wide Temperature Range, High Temperatures-High Pressures 29, 51-57 (1997).
[5] D. Lesnic, L. Elliot, D. B. Ingham, Identification of the Thermal Conductivity and Heat Capacity in Unsteady Noinlinear Heat Conduction Problems Using the Boundary Element Method, Journal of Computational Physics 126, 410-420, (1996).
[6] Z. Malinowski, A. Buczek, T. Telejko, S. Słupek, Określenie współczynnika przewodzenia ciepła metodą rozwiązania odwrotnego, Materiały IV Konferencji. Zastosowanie komputerów w zakładach przetwórstwa metali, I 997, Ustroń-Jaszowiec, pp. 199-206 (in Polish).
[7] T. Telejko, Z. Malinowski, A. Buczek, Analysis of the Inverse Solution in Application to Determining Thermal Conductivity of Metals, Metallurgy and Foundry Engineering 23, 3, 177-185 (1998).
[8] Lykow, Teorija teploprovodnosti, GTTI, Moskwa 1952. [9] T. Kręglewski, T. Rogowski, A. Ruszczyński, J. Szymanowski, Metody optymalizacji w języku FORTRAN, PWN, Warszawa 1984.
[10] J. G. Hust, A. B. Lankford, Report of Investigation Research Materials 8420 and 8421, National Bureau of Standards, Gaithersburg, May 1984.