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Beschreibung

This monograph is centered on mathematical modeling, innovative numerical algorithms and adaptive concepts to deal with fracture phenomena in multiphysics. State-of-the-art phase-field fracture models are complemented with prototype explanations and rigorous numerical analysis. These developments are embedded into a carefully designed balance between scientific computing aspects and numerical modeling of nonstationary coupled variational inequality systems. Therein, a focus is on nonlinear solvers, goal-oriented error estimation, predictor-corrector adaptivity, and interface conditions. Engineering applications show the potential for tackling practical problems within the fields of solid mechanics, porous media, and fluidstructure interaction.

This monograph is centered on mathematical modeling, innovative numerical algorithms and adaptive concepts to deal with fracture phenomena in multiphysics. State-of-the-art phase-field fracture models are complemented with prototype explanations and rigorous numerical analysis. These developments are embedded into a carefully designed balance between scientific computing aspects and numerical modeling of nonstationary coupled variational inequality systems. Therein, a focus is on nonlinear solvers, goal-oriented error estimation, predictor-corrector adaptivity, and interface conditions. Engineering applications show the potential for tackling practical problems within the fields of solid mechanics, porous media, and fluidstructure interaction.

Über den Autor
Thomas Wick, Leibniz Universität Hannover, Germany.
Details
Empfohlen (von): 22
Erscheinungsjahr: 2025
Fachbereich: Allgemeines
Genre: Mathematik, Medizin, Naturwissenschaften, Technik
Rubrik: Naturwissenschaften & Technik
Medium: Buch
Inhalt: XXIV
334 S.
12 s/w Illustr.
69 farbige Illustr.
30 s/w Tab.
12 b/w and 69 col. ill.
30 b/w tbl.
ISBN-13: 9783110496567
ISBN-10: 3110496569
Sprache: Englisch
Einband: Gebunden
Autor: Wick, Thomas
Hersteller: De Gruyter
de Gruyter, Walter, GmbH
Verantwortliche Person für die EU: Walter de Gruyter GmbH, De Gruyter GmbH, Genthiner Str. 13, D-10785 Berlin, productsafety@degruyterbrill.com
Maße: 246 x 175 x 31 mm
Von/Mit: Thomas Wick
Erscheinungsdatum: 08.04.2025
Gewicht: 0,858 kg
Artikel-ID: 111818267

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