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The hybrid high-order method for pol...
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Di Pietro, Daniele Antonio.
The hybrid high-order method for polytopal meshesdesign, analysis, and applications /
Record Type:
Electronic resources : Monograph/item
Title/Author:
The hybrid high-order method for polytopal meshesby Daniele Antonio Di Pietro, Jerome Droniou.
Reminder of title:
design, analysis, and applications /
Author:
Di Pietro, Daniele Antonio.
other author:
Droniou, Jerome.
Published:
Cham :Springer International Publishing :2020.
Description:
xxxi, 525 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Numerical analysis.
Online resource:
https://doi.org/10.1007/978-3-030-37203-3
ISBN:
9783030372033$q(electronic bk.)
The hybrid high-order method for polytopal meshesdesign, analysis, and applications /
Di Pietro, Daniele Antonio.
The hybrid high-order method for polytopal meshes
design, analysis, and applications /[electronic resource] :by Daniele Antonio Di Pietro, Jerome Droniou. - Cham :Springer International Publishing :2020. - xxxi, 525 p. :ill., digital ;24 cm. - MS&A ;v.19. - MS&A ;v.10..
Part I: Foundations -- 1 Setting -- 2 Basic principles of Hybrid High-Order methods: The Poisson problem -- 3 Variable di_usion and di_usion-advection-reaction -- 4 Complements on pure di_usion -- 5 Variations and comparison with other methods -- Part II: Applications to advanced models -- 6 p-Laplacian and Leray-Lions -- 7 Linear elasticity -- 8 Stokes -- 9 Navier-Stokes -- Part III: Appendix -- 10 Appendix A: Error analysis setting for schemes in fully discrete formulation -- 11 Appendix B: Implementation.
This monograph provides an introduction to the design and analysis of Hybrid High-Order methods for diffusive problems, along with a panel of applications to advanced models in computational mechanics. Hybrid High-Order methods are new-generation numerical methods for partial differential equations with features that set them apart from traditional ones. These include: the support of polytopal meshes, including non-star-shaped elements and hanging nodes; the possibility of having arbitrary approximation orders in any space dimension; an enhanced compliance with the physics; and a reduced computational cost thanks to compact stencil and static condensation. The first part of the monograph lays the foundations of the method, considering linear scalar second-order models, including scalar diffusion - possibly heterogeneous and anisotropic - and diffusion-advection-reaction. The second part addresses applications to more complex models from the engineering sciences: non-linear Leray-Lions problems, elasticity, and incompressible fluid flows. This book is primarily intended for graduate students and researchers in applied mathematics and numerical analysis, who will find here valuable analysis tools of general scope.
ISBN: 9783030372033$q(electronic bk.)
Standard No.: 10.1007/978-3-030-37203-3doiSubjects--Topical Terms:
182073
Numerical analysis.
LC Class. No.: QA297 / .D575 2020
Dewey Class. No.: 518
The hybrid high-order method for polytopal meshesdesign, analysis, and applications /
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Part I: Foundations -- 1 Setting -- 2 Basic principles of Hybrid High-Order methods: The Poisson problem -- 3 Variable di_usion and di_usion-advection-reaction -- 4 Complements on pure di_usion -- 5 Variations and comparison with other methods -- Part II: Applications to advanced models -- 6 p-Laplacian and Leray-Lions -- 7 Linear elasticity -- 8 Stokes -- 9 Navier-Stokes -- Part III: Appendix -- 10 Appendix A: Error analysis setting for schemes in fully discrete formulation -- 11 Appendix B: Implementation.
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This monograph provides an introduction to the design and analysis of Hybrid High-Order methods for diffusive problems, along with a panel of applications to advanced models in computational mechanics. Hybrid High-Order methods are new-generation numerical methods for partial differential equations with features that set them apart from traditional ones. These include: the support of polytopal meshes, including non-star-shaped elements and hanging nodes; the possibility of having arbitrary approximation orders in any space dimension; an enhanced compliance with the physics; and a reduced computational cost thanks to compact stencil and static condensation. The first part of the monograph lays the foundations of the method, considering linear scalar second-order models, including scalar diffusion - possibly heterogeneous and anisotropic - and diffusion-advection-reaction. The second part addresses applications to more complex models from the engineering sciences: non-linear Leray-Lions problems, elasticity, and incompressible fluid flows. This book is primarily intended for graduate students and researchers in applied mathematics and numerical analysis, who will find here valuable analysis tools of general scope.
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EB QA297 .D596 2020 2020
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https://doi.org/10.1007/978-3-030-37203-3
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