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Fluid-structure interactionsmodels, ...
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Richter, Thomas.
Fluid-structure interactionsmodels, analysis and finite elements /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Fluid-structure interactionsby Thomas Richter.
Reminder of title:
models, analysis and finite elements /
Author:
Richter, Thomas.
Published:
Cham :Springer International Publishing :2017.
Description:
xviii, 436 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Fluid-structure interaction.
Online resource:
http://dx.doi.org/10.1007/978-3-319-63970-3
ISBN:
9783319639703$q(electronic bk.)
Fluid-structure interactionsmodels, analysis and finite elements /
Richter, Thomas.
Fluid-structure interactions
models, analysis and finite elements /[electronic resource] :by Thomas Richter. - Cham :Springer International Publishing :2017. - xviii, 436 p. :ill., digital ;24 cm. - Lecture notes in computational science and engineering,1181439-7358 ;. - Lecture notes in computational science and engineering ;82..
Part I Fundamentals -- Introduction -- Models -- Coupled Fluid -Structure Interactions -- Discretization -- Part II Numerical Realization -- ALE Formulation for Fluid-Structure Interactions -- Fully Eulerian Formulation for Fluid-Structure Interactions -- Linear Solvers for Fluid-Structure Interactions -- Error Estimation and Adaptivity -- Part III Applications -- Optimization with fluid-structure interactions -- Mechano-chemical fluid-structure interactions and active materials -- Non-Stationary Dynamics and Coupled Oscillations -- Fluid-Structure Interaction with contact -- References -- Index.
This book starts by introducing the fundamental concepts of mathematical continuum mechanics for fluids and solids and their coupling. Special attention is given to the derivation of variational formulations for the subproblems describing fluid- and solid-mechanics as well as the coupled fluid-structure interaction problem. Two monolithic formulations for fluid-structure interactions are described in detail: the well-established ALE formulation and the modern Fully Eulerian formulation, which can effectively deal with problems featuring large deformation and contact. Further, the book provides details on state-of-the-art discretization schemes for fluid- and solid-mechanics and considers the special needs of coupled problems with interface-tracking and interface-capturing techniques. Lastly, advanced topics like goal-oriented error estimation, multigrid solution and gradient-based optimization schemes are discussed in the context of fluid-structure interaction problems.
ISBN: 9783319639703$q(electronic bk.)
Standard No.: 10.1007/978-3-319-63970-3doiSubjects--Topical Terms:
284060
Fluid-structure interaction.
LC Class. No.: TA357.5.F58 / R53 2017
Dewey Class. No.: 620.106
Fluid-structure interactionsmodels, analysis and finite elements /
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Part I Fundamentals -- Introduction -- Models -- Coupled Fluid -Structure Interactions -- Discretization -- Part II Numerical Realization -- ALE Formulation for Fluid-Structure Interactions -- Fully Eulerian Formulation for Fluid-Structure Interactions -- Linear Solvers for Fluid-Structure Interactions -- Error Estimation and Adaptivity -- Part III Applications -- Optimization with fluid-structure interactions -- Mechano-chemical fluid-structure interactions and active materials -- Non-Stationary Dynamics and Coupled Oscillations -- Fluid-Structure Interaction with contact -- References -- Index.
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This book starts by introducing the fundamental concepts of mathematical continuum mechanics for fluids and solids and their coupling. Special attention is given to the derivation of variational formulations for the subproblems describing fluid- and solid-mechanics as well as the coupled fluid-structure interaction problem. Two monolithic formulations for fluid-structure interactions are described in detail: the well-established ALE formulation and the modern Fully Eulerian formulation, which can effectively deal with problems featuring large deformation and contact. Further, the book provides details on state-of-the-art discretization schemes for fluid- and solid-mechanics and considers the special needs of coupled problems with interface-tracking and interface-capturing techniques. Lastly, advanced topics like goal-oriented error estimation, multigrid solution and gradient-based optimization schemes are discussed in the context of fluid-structure interaction problems.
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