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Computational methods for fracture in porous media : isogeometric and extended finite element methods

Author: René de Borst
Publisher: Amsterdam, Netherland : Elsevier, [2018]. ©2018
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
Computational Methods for Fracture in Porous Media: Isogeometric and Extended Finite Element Methods provides a self-contained presentation of new modeling techniques for simulating crack propagation in fluid-saturated porous materials. This book reviews the basic equations that govern fluid-saturated porous media. A multi-scale approach to modeling fluid transport in joins, cracks, and faults is described in such a  Read more...
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Genre/Form: Electronic books
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: René de Borst
ISBN: 9780081009239 0081009232
OCLC Number: 1006637727
Description: 1 online resource : illustrations.
Contents: 1. Introduction 2. Fractured or fracturing fluid-saturated porous media 3. Fracture mechanics 4. Interface elements and remeshing 5. The Extended Finite Element Method 6. Fracture modelling using isogeometric analysis 7. Phase-field methods for fracture
Responsibility: René de Borst.

Abstract:

Computational Methods for Fracture in Porous Media: Isogeometric and Extended Finite Element Methods provides a self-contained presentation of new modeling techniques for simulating crack propagation in fluid-saturated porous materials. This book reviews the basic equations that govern fluid-saturated porous media. A multi-scale approach to modeling fluid transport in joins, cracks, and faults is described in such a way that the resulting formulation allows for a sub-grid representation of the crack and fluid flow in the crack. Interface elements are also analyzed with their extension to the hydromechanical case. The flexibility of Extended Finite Element Method for non-stationary cracks is also explored and their formulation for fracture in porous media described. This book introduces Isogeometric finite element methods and its basic features and properties. The rapidly evolving phase-field approach to fracture is also discussed. The applications of this book's content cover various fields of engineering, making it a valuable resource for researchers in soil, rock and biomechanics.

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