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Tutorials on Multiresolution in Geometric Modelling

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Release : 2013-03-09
Genre : Mathematics
Kind : eBook
Book Rating : 882/5 ( reviews)

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Book Synopsis Tutorials on Multiresolution in Geometric Modelling by : Armin Iske

Download or read book Tutorials on Multiresolution in Geometric Modelling written by Armin Iske. This book was released on 2013-03-09. Available in PDF, EPUB and Kindle. Book excerpt: This is the only textbook available on multiresolution methods in geometric modeling, a central topic in visualization, which is of great importance for industrial applications. Written in tutorial form, the book is introductory in character, and includes supporting exercises. Other supplementary material and software can be downloaded from the website www.ma.tum.de/primus 2001/.

Advances in Multiresolution for Geometric Modelling

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Release : 2006-05-24
Genre : Mathematics
Kind : eBook
Book Rating : 081/5 ( reviews)

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Book Synopsis Advances in Multiresolution for Geometric Modelling by : Neil Dodgson

Download or read book Advances in Multiresolution for Geometric Modelling written by Neil Dodgson. This book was released on 2006-05-24. Available in PDF, EPUB and Kindle. Book excerpt: Multiresolution methods in geometric modelling are concerned with the generation, representation, and manipulation of geometric objects at several levels of detail. Applications include fast visualization and rendering as well as coding, compression, and digital transmission of 3D geometric objects. This book marks the culmination of the four-year EU-funded research project, Multiresolution in Geometric Modelling (MINGLE). The book contains seven survey papers, providing a detailed overview of recent advances in the various fields within multiresolution modelling, and sixteen additional research papers. Each of the seven parts of the book starts with a survey paper, followed by the associated research papers in that area. All papers were originally presented at the MINGLE 2003 workshop held at Emmanuel College, Cambridge, UK, 9-11 September 2003.

Multiresolution in Geometric Modelling

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Release : 2005
Genre :
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Multiresolution in Geometric Modelling by : M. F. Hassan

Download or read book Multiresolution in Geometric Modelling written by M. F. Hassan. This book was released on 2005. Available in PDF, EPUB and Kindle. Book excerpt:

Geometric Modelling

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Release : 2013-04-17
Genre : Mathematics
Kind : eBook
Book Rating : 870/5 ( reviews)

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Book Synopsis Geometric Modelling by : S. Hahmann

Download or read book Geometric Modelling written by S. Hahmann. This book was released on 2013-04-17. Available in PDF, EPUB and Kindle. Book excerpt: In 19 articles presented by leading experts in the field of geometric modelling the state-of-the-art on representing, modeling, and analyzing curves, surfaces as well as other 3-dimensional geometry is given. The range of applications include CAD/CAM-systems, computer graphics, scientific visualization, virtual reality, simulation and medical imaging. The content of this book is based on selected lectures given at a workshop held at IBFI Schloss Dagstuhl, Germany. Topics treated are: – curve and surface modelling – non-manifold modelling in CAD – multiresolution analysis of complex geometric models – surface reconstruction – variational design – computational geometry of curves and surfaces – 3D meshing – geometric modelling for scientific visualization – geometric models for biomedical applications

Multi-scale Simulation of Composite Materials

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Release : 2019-02-01
Genre : Science
Kind : eBook
Book Rating : 57X/5 ( reviews)

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Book Synopsis Multi-scale Simulation of Composite Materials by : Stefan Diebels

Download or read book Multi-scale Simulation of Composite Materials written by Stefan Diebels. This book was released on 2019-02-01. Available in PDF, EPUB and Kindle. Book excerpt: Due to their high stiffness and strength and their good processing properties short fibre reinforced thermoplastics are well-established construction materials. Up to now, simulation of engineering parts consisting of short fibre reinforced thermoplastics has often been based on macroscopic phenomenological models, but deformations, damage and failure of composite materials strongly depend on their microstructure. The typical modes of failure of short fibre thermoplastics enriched with glass fibres are matrix failure, rupture of fibres and delamination, and pure macroscopic consideration is not sufficient to predict those effects. The typical predictive phenomenological models are complex and only available for very special failures. A quantitative prediction on how failure will change depending on the content and orientation of the fibres is generally not possible, and the direct involvement of the above effects in a numerical simulation requires multi-scale modelling. One the one hand, this makes it possible to take into account the properties of the matrix material and the fibre material, the microstructure of the composite in terms of fibre content, fibre orientation and shape as well as the properties of the interface between fibres and matrix. On the other hand, the multi-scale approach links these local properties to the global behaviour and forms the basis for the dimensioning and design of engineering components. Furthermore, multi-scale numerical simulations are required to allow efficient solution of the models when investigating three-dimensional problems of dimensioning engineering parts. Bringing together mathematical modelling, materials mechanics, numerical methods and experimental engineering, this book provides a unique overview of multi-scale modelling approaches, multi-scale simulations and experimental investigations of short fibre reinforced thermoplastics. The first chapters focus on two principal subjects: the mathematical and mechanical models governing composite properties and damage description. The subsequent chapters present numerical algorithms based on the Finite Element Method and the Boundary Element Method, both of which make explicit use of the composite’s microstructure. Further, the results of the numerical simulations are shown and compared to experimental results. Lastly, the book investigates deformation and failure of composite materials experimentally, explaining the applied methods and presenting the results for different volume fractions of fibres. This book is a valuable resource for applied mathematics, theoretical and experimental mechanical engineers as well as engineers in industry dealing with modelling and simulation of short fibre reinforced composites.

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