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New implementation of MLBIE method for heat conduction analysis in functionally graded materials
Authors:Davoud Mirzaei  Mehdi Dehghan
Affiliation:a Department of Mathematics, University of Isfahan, 81745-163 Isfahan, Iran
b Department of Applied Mathematics, Faculty of Mathematics and Computer Science, Amirkabir University of Technology, No. 424, Hafez Ave., 15914 Tehran, Iran
Abstract:The meshless local boundary integral equation (MLBIE) method with an efficient technique to deal with the time variable are presented in this article to analyze the transient heat conduction in continuously nonhomogeneous functionally graded materials (FGMs). In space, the method is based on the local boundary integral equations and the moving least squares (MLS) approximation of the temperature and heat flux. In time, again the MLS approximates the equivalent Volterra integral equation derived from the heat conduction problem. It means that, the MLS is used for approximation in both time and space domains, and we avoid using the finite difference discretization or Laplace transform methods to overcome the time variable. Finally the method leads to a single generalized Sylvester equation rather than some (many) linear systems of equations. The method is computationally attractive, which is shown in couple of numerical examples for a finite strip and a hollow cylinder with an exponential spatial variation of material parameters.
Keywords:Meshless local boundary integral equation (MLBIE) method   Moving least squares (MLS) approximation   Heat conduction problem   Functionally graded materials (FGM)
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