Analytical solutions for steady heat transfer in longitudinal fins with temperature-dependent properties
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Publication:459706
DOI10.1155/2013/273052zbMath1296.80008OpenAlexW1997093665WikidataQ59025472 ScholiaQ59025472MaRDI QIDQ459706
Partner L. Ndlovu, Raseelo J. Moitsheki
Publication date: 13 October 2014
Published in: Mathematical Problems in Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1155/2013/273052
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Cites Work
- Status of the differential transformation method
- Application of He's variational iteration method to nonlinear heat transfer equations
- Steady heat transfer through a radial fin with rectangular and hyperbolic profiles
- Homotopy perturbation method for fin efficiency of convective straight fins with temperature-dependent thermal conductivity
- Analytical solution for different profiles of fin with temperature-dependent thermal conductivity
- Steady one-dimensional heat flow in a longitudinal triangular and parabolic fin
- Some exact solutions of the fin problem with a power law temperature-dependent thermal conductivity
- Application of generalized differential transform method to multi-order fractional differential equations
- A decomposition solution for fins with temperature-dependent surface heat flux
- The effect of the boundary condition at a fin tip on the performance of the fin with and without internal heat generation
- A decomposition method for solving the convective longitudinal fins with variable thermal conductivity
- Solution of fractional differential equations by using differential transform method
- Reply to Comment on ‘Solution of the Duffing–van der Pol oscillator equation by the differential transform method’
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