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Titlebook: Boundary Element Methods in Heat Transfer; L. C. Wrobel,C. A. Brebbia Book 1992 Computational Mechanics Publications 1992 algorithms.conve

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Solving Heat Transfer Problems by the Dual Reciprocity BEM,a simple and elegant formulation. However, some heat transfer problems lead to an integral equation with domain integrals. The presence of these integrals diminishes the efficiency of the method and makes the data preparation needed for the computer codes much more difficult.
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Transient Problems using Time-Dependent Fundamental Solutions,n can be viewed as a direct extension of potential theory since the proper fundamental solution of the diffusion equation is used to obtain an equivalent boundary integral equation. Numerical techniques are then employed to solve the integral equation in discrete form through a time-marching procedu
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Solving Linear Heat Conduction Problems by the Multiple Reciprocity Method,he fact that calculation of the temperature field is needed in order to determine a suitable heating or cooling system of industrial object, the temperature field also frequently substantially modifies mechanical properties of the body and causes additional stresses. Therefore efficient methods of s
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Solving Nonlinear Heat Transfer Problems Using the Boundary Element Method,ar analysis is even more common than in structural analysis. It is obvious that for an engineer the latter problems are of primary interest. The computational complexity of determining stress and strain distribution is much greater than the effort associated with computing temperature fields in soli
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Coupled Conduction-Convection Problems,ts in ground and surface water, diffusion in semiconductor devices, travelling magnetic fields and magnetohydrodynamics, etc. In the field of heat transfer, we can mention the problems of crystal growth, laser-assisted surface hardening, metal cutting, casting and forming, and others. A special case
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Solving Coupled Problems Involving Conduction, Convection and Thermal Radiation,nfiguration of an industrial plant is the concave wall forming an enclosure (. industrial furnace, combustion chamber ..). Within the enclosure, heat is generated due to the combustion process, or alternatively due to electric current flow, or others. The purpose of this heat generation process is t
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