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Titlebook: ECCOMAS Multidisciplinary Jubilee Symposium; New Computational Ch Josef Eberhardsteiner,Christian Hellmich,Jacques P Book 2009 Springer Sci

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On the Multiscale Computation of Confined Granular Media,scale homogenization approach, containing a micro and a macro level. The microscale, describing the mechanical behavior of the single grains, is modeled by a discrete element method. On the macroscale, a continuum is assumed, discretized by a standard finite element method. Each point on the macrosc
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Computational Model Verification and Validation in Structural Mechanics,resented regarding the safety and reliability requirements of the ASME V&V 10-2006 Guide for Verification and Validation in Computational Solid Mechanics, as well as efficiency aspects..In particular, model adaptivity with load- and process-depending applications of adequate mathematical models and
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Microstructure-Oriented Modeling and Computational Remodeling of the Collagen Network in Corneo-Scltional model is presented to investigate the interaction between collagen fibril architecture and mechanical loading conditions in eye tissues. The biomechanical properties of eye tissues are derived from the single crimped fibril at the micro-scale via the collagen network of distributed fibrils at
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Microstructure Optimization and Identification in Multi-scale Modelling, computation and a direct analysis based on a computational homogenization. The direct analysis in the computational homogenization is performed using the finite element method. A few numerical examples are presented: shape optimisation and material and shape identification of fibers.
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,“Homogenization of Strength” – A Numerical Limit Analysis Approach,ithin the materials is — to a high extent — triggered by the material morphology defining the arrangement of voids and reinforcing particles. Moreover, the forming failure zones introduce a new length scale, making the definition of representative volume elements (RVEs) and their boundary conditions
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