311,39 €
345,99 €
-10% with code: EXTRA
Multiphysics Phase-Field Fracture
Multiphysics Phase-Field Fracture
311,39
345,99 €
  • We will send in 10–14 business days.
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 solv…
345.99
  • Publisher:
  • Year: 2018
  • ISBN-10: 3110496569
  • ISBN-13: 9783110496567
  • Format: 17 x 24.4 x 2.5 cm, kieti viršeliai
  • Language: English
  • SAVE -10% with code: EXTRA

Multiphysics Phase-Field Fracture (e-book) (used book) | bookbook.eu

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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.

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  • Author: Thomas Wick
  • Publisher:
  • Year: 2018
  • ISBN-10: 3110496569
  • ISBN-13: 9783110496567
  • Format: 17 x 24.4 x 2.5 cm, kieti viršeliai
  • Language: English English

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.

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