Numerical-analytical method of solution of a nonlinear unsteady heat-conduction equation

A method of solution of a one-dimensional nonlinear unsteady heat-conduction equation has been proposed. The use of the method of Green’s functions made it possible to transform the resulting equation to a nonlinear Volterra integral equation of the second kind for temperature, which is solved by th...

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Veröffentlicht in:Journal of engineering physics and thermophysics 2008-11, Vol.81 (6), p.1099-1103
Hauptverfasser: Belik, V. D., Uryukov, B. A., Frolov, G. A., Tkachenko, G. V.
Format: Artikel
Sprache:eng
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Zusammenfassung:A method of solution of a one-dimensional nonlinear unsteady heat-conduction equation has been proposed. The use of the method of Green’s functions made it possible to transform the resulting equation to a nonlinear Volterra integral equation of the second kind for temperature, which is solved by the quadratic-form method. A system of recurrence relations, which is solved numerically, has been obtained. The influence of the nonlinearity on the temperature profiles has been analyzed. A comparison to the numerical finite-element method has shown that the numerical-analytical technique allows a reduction of more than 103 times in the calculation time.
ISSN:1062-0125
1573-871X
DOI:10.1007/s10891-009-0150-8