Analytical solution for different profiles of fin with temperature-dependent thermal conductivity.
Moradi, A., Ahmadikia, H. (2010)
Mathematical Problems in Engineering
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Moradi, A., Ahmadikia, H. (2010)
Mathematical Problems in Engineering
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Jaime E. Muñoz Rivera, Vanilde Bisognin, Eleni Bisognin (2002)
Bollettino dell'Unione Matematica Italiana
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We study the thermoelastic system for material which are partially thermoelastic. That is, a material divided into two parts, one of them a good conductor of heat, so there exists a thermoelastic phenomenon. The other is a bad conductor of heat so there is not heat flux. We prove for such models that the solution decays exponentially as time goes to infinity. We also consider a nonlinear case.
Moitsheki, Raseelo J., Rowjee, Atish (2011)
Mathematical Problems in Engineering
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Vala, Jiří
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The hot-wire method, based on the recording of the temperature development in time in a testing sample, supplied by a probe with its own thermal source, is useful to evaluate the thermal conductivity of materials under extremal loads, in particular in refractory brickworks. The formulae in the technical standards come from the analytical solution of the non-stationary equation of heat conduction in cylindric (finally only polar) coordinates for a simplified formulation of boundary conditions, neglecting...
Dorfman, Abram, Renner, Zachary (2009)
Mathematical Problems in Engineering
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Chen, Xiao Dong, Nguang, Sing Kiong (2003)
Journal of Applied Mathematics and Decision Sciences
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Nelson, M. I., Brindley, J., McIntosh, A. C. (2002)
Journal of Applied Mathematics and Decision Sciences
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Saxena, V.P., Gupta, M.P. (1994)
International Journal of Mathematics and Mathematical Sciences
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Aebischer, Beat (2007)
Mathematical Problems in Engineering
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