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In this publication a new class of Hybrid/Mixed Finite Elements (HM-FE) is developed for heat conductivity problems and thermoelasticity in solids. These elements are based on the independent approximation of secondary fields (strains and temperature gradient field) and on the collocation of these fields in some cleverly chosen points with the secondary fields derived from primal variables (mechanical displacements and temperature field). After that the HM-FEM is utilized to investigate the influence of material porous micro-structure to the overall material parameters using the multiscale approach.…mehr

Produktbeschreibung
In this publication a new class of Hybrid/Mixed Finite Elements (HM-FE) is developed for heat conductivity problems and thermoelasticity in solids. These elements are based on the independent approximation of secondary fields (strains and temperature gradient field) and on the collocation of these fields in some cleverly chosen points with the secondary fields derived from primal variables (mechanical displacements and temperature field). After that the HM-FEM is utilized to investigate the influence of material porous micro-structure to the overall material parameters using the multiscale approach.
Autorenporträt
Pavel Kraus completed his master's degree in applied mechanics at Slovak University of Technology. Recently PhD student at the Institute of applied mechanics and mechatronics, Slovak University of Technology, Bratislava.