Comparative analysis of power-law fin-type problems using variational iteration method and finite element method.
Atay, Mehmet Tarık, Coşkun, Safa Bozkurt (2008)
Mathematical Problems in Engineering
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Atay, Mehmet Tarık, Coşkun, Safa Bozkurt (2008)
Mathematical Problems in Engineering
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Aebischer, Beat (2007)
Mathematical Problems in Engineering
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Ludwig, Martin, Koch, Jochim, Fischer, Bernd (2007)
ETNA. Electronic Transactions on Numerical Analysis [electronic only]
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Stanislav Šťastník, Jiří Vala, Hana Kmínová (2007)
Kybernetika
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Modelling of building heat transfer needs two basic material characteristics: heat conduction factor and thermal capacity. Under some simplifications these two factors can be determined from a rather simple equipment, generating heat from one of two aluminium plates into the material sample and recording temperature on the contacts between the sample and the plates. However, the numerical evaluation of both characteristics leads to a non-trivial optimization problem. This article suggests...
Friedrich Karl Hebeker (2010)
ESAIM: Mathematical Modelling and Numerical Analysis
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We consider a domain decomposition method for some unsteady heat conduction problem in composite structures. This linear model problem is obtained by homogenization of thin layers of fibres embedded into some standard material. For ease of presentation we consider the case of two space dimensions only. The set of finite element equations obtained by the backward Euler scheme is parallelized in a problem-oriented fashion by some noniterative overlapping domain splitting method, eventually...
Chen, Xiao Dong, Nguang, Sing Kiong (2003)
Journal of Applied Mathematics and Decision Sciences
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Moitsheki, Raseelo J., Rowjee, Atish (2011)
Mathematical Problems in Engineering
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Halabi, Yahia S. (1986)
International Journal of Mathematics and Mathematical Sciences
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Sara Beddiaf, Laurent Autrique, Laetitia Perez, Jean-Claude Jolly (2016)
International Journal of Applied Mathematics and Computer Science
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Inverse three-dimensional heat conduction problems devoted to heating source localization are ill posed. Identification can be performed using an iterative regularization method based on the conjugate gradient algorithm. Such a method is usually implemented off-line, taking into account observations (temperature measurements, for example). However, in a practical context, if the source has to be located as fast as possible (e.g., for diagnosis), the observation horizon has to be reduced....
Dorfman, Abram, Renner, Zachary (2009)
Mathematical Problems in Engineering
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Alexiades, Vasilios, Hannoun, Noureddine, Mai, Tsun Zee (2003)
Electronic Journal of Differential Equations (EJDE) [electronic only]
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