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Finite Volumes for Complex Applications VI Problems

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Cover of 'Finite Volumes for Complex Applications VI Problems & Perspectives'

Table of Contents

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    Book Overview
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    Chapter 1 Volume-Agglomeration Coarse Grid In Schwarz Algorithm
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    Chapter 2 A comparison between the meshless and the finite volume methods for shallow water flows
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    Chapter 3 Time Compactness Tools for Discretized Evolution Equations and Applications to Degenerate Parabolic PDEs
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    Chapter 4 Penalty Methods for the Hyperbolic System Modelling the Wall-Plasma Interaction in a Tokamak
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    Chapter 5 A Spectacular Vector Penalty-Projection Method for Darcy and Navier-Stokes Problems
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    Chapter 6 Numerical Front Propagation Using Kinematical Conservation Laws
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    Chapter 7 Preservation of the Discrete Geostrophic Equilibrium in Shallow Water Flows
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    Chapter 8 Arbitrary order nodal mimetic discretizations of elliptic problems on polygonal meshes
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    Chapter 9 Adaptive cell-centered finite volume method for non-homogeneous diffusion problems: Application to transport in porous media
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    Chapter 10 A Generalized Rusanov method for Saint-Venant Equations with Variable Horizontal Density
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    Chapter 11 Hydrostatic Upwind Schemes for Shallow–Water Equations
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    Chapter 12 Finite Volumes Asymptotic Preserving Schemes for Systems of Conservation Laws with Stiff Source Terms
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    Chapter 13 Development of DDFV Methods for the Euler Equations
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    Chapter 14 Comparison of Explicit and Implicit Time Advancing in the Simulation of a 2D Sediment Transport Problem
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    Chapter 15 Numerical Simulation of the Flow in a Turbopump Inducer in Non-Cavitating and Cavitating Conditions
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    Chapter 16 On Some High Resolution Schemes for Stably Stratified Fluid Flows
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    Chapter 17 Convergence Analysis of the Upwind Finite Volume Scheme for General Transport Problems
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    Chapter 18 A Low Degree Non–Conforming Approximation of the Steady Stokes Problem with an Eddy Viscosity
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    Chapter 19 Some Abstract Error Estimates of a Finite Volume Scheme for the Wave Equation on General Nonconforming Multidimensional Spatial Meshes
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    Chapter 20 A Convergent Finite Volume Scheme for Two-Phase Flows in Porous Media with Discontinuous Capillary Pressure Field
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    Chapter 21 Uncertainty Quantification for a Clarifier–Thickener Model with Random Feed
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    Chapter 22 Asymptotic preserving schemes in the quasi-neutral limit for the drift-diffusion system
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    Chapter 23 A Posteriori Error Estimates for Unsteady Convection–Diffusion–Reaction Problems and the Finite Volume Method
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    Chapter 24 Large Time-Step Numerical Scheme for the Seven-Equation Model of Compressible Two-Phase Flows
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    Chapter 25 Asymptotic Behavior of the Scharfetter–Gummel Scheme for the Drift-Diffusion Model
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    Chapter 26 A Finite Volume Solver for Radiation Hydrodynamics in the Non Equilibrium Diffusion Limit
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    Chapter 27 An Extension of the MAC Scheme to some Unstructured Meshes
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    Chapter 28 Multi-dimensional Optimal Order Detection (MOOD) — a Very High-Order Finite Volume Scheme for Conservation Laws on Unstructured Meshes
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    Chapter 29 A Relaxation Approach for Simulating Fluid Flows in a Nozzle
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    Chapter 30 A CeVeFE DDFV scheme for discontinuous anisotropic permeability tensors
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    Chapter 31 Multi-Water-Bag Model And Method Of Moments For The Vlasov Equation
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    Chapter 32 Comparison of Upwind and Centered Schemes for Low Mach Number Flows
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    Chapter 33 On the Godunov Scheme Applied to the Variable Cross-Section Linear Wave Equation
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    Chapter 34 Towards stabilization of cell-centered Lagrangian methods for compressible gas dynamics
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    Chapter 35 Hybrid Finite Volume Discretization of Linear Elasticity Models on General Meshes
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    Chapter 36 An A Posteriori Error Estimator for a Finite Volume Discretization of the Two-phase Flow
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    Chapter 37 A Two-Dimensional Relaxation Scheme for the Hybrid Modelling of Two-Phase Flows
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    Chapter 38 Finite Volume Method for Well-Driven Groundwater Flow
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    Chapter 39 Adaptive Reduced Basis Methods for Nonlinear Convection–Diffusion Equations
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    Chapter 40 Adaptive Time-Space Algorithms for the Simulation of Multi-scale Reaction Waves
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    Chapter 41 Dispersive wave runup on non-uniform shores
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    Chapter 42 MAC Schemes on Triangular Meshes
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    Chapter 43 Multiphase Flow in Porous Media Using the VAG Scheme
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    Chapter 44 Grid Orientation Effect and MultiPoint Flux Approximation
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    Chapter 45 Gradient Schemes for Image Processing
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    Chapter 46 Gradient Scheme Approximations for Diffusion Problems
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    Chapter 47 Cartesian Grid Method for the Compressible Euler Equations
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    Chapter 48 Compressible Stokes Problem with General EOS
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    Chapter 49 Asymptotic Preserving Finite Volumes Discretization For Non-Linear Moment Model On Unstructured Meshes
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    Chapter 50 Mass Conservative Coupling Between Fluid Flow and Solute Transport
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    Chapter 51 Large Eddy Simulation of the Stable Boundary Layer
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    Chapter 52 3D Unsteady Flow Simulation with the Use of the ALE Method
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    Chapter 53 FVM-FEM Coupling and its Application to Turbomachinery
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    Chapter 54 Charge Transport in Semiconductors and a Finite Volume Scheme
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    Chapter 55 Playing with Burgers’s Equation
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    Chapter 56 On Discrete Sobolev–Poincaré Inequalitiesfor Voronoi Finite Volume Approximations
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    Chapter 57 A Simple Second Order Cartesian Scheme for Compressible Flows
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    Chapter 58 Efficient Implementation of High Order Reconstruction in Finite Volume Methods
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    Chapter 59 A Well-Balanced Scheme For Two-Fluid Flows In Variable Cross-Section ducts
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    Chapter 60 Discretization of the viscous dissipation term with the MAC scheme
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    Chapter 61 A Sharp Contact Discontinuity Scheme for Multimaterial Models
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    Chapter 62 Numerical Simulation of Viscous and Viscoelastic Fluids Flow by Finite Volume Method
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    Chapter 63 An Aggregation Based Algebraic Multigrid Method Applied to Convection-Diffusion Operators
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    Chapter 64 Stabilized DDFV Schemes For The Incompressible Navier-Stokes Equations
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    Chapter 65 Higher-Order Reconstruction: From Finite Volumes to Discontinuous Galerkin
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    Chapter 66 Flux-Based Approach for Conservative Remap of Multi-Material Quantities in 2D Arbitrary Lagrangian-Eulerian Simulations
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    Chapter 67 Optimized Riemann Solver to Compute the Drift-Flux Model
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    Chapter 68 Finite Volume Schemes for Solving Nonlinear Partial Differential Equations in Financial Mathematics
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    Chapter 69 Monotonicity Conditions in the Mimetic Finite Difference Method
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    Chapter 70 Discrete Duality Finite Volume Method Applied to Linear Elasticity
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    Chapter 71 Model Adaptation for Hyperbolic Systems with Relaxation
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    Chapter 72 Inflow-Implicit/Outflow-Explicit Scheme for Solving Advection Equations
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    Chapter 73 4D Numerical Schemes for Cell Image Segmentation and Tracking
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    Chapter 74 Rhie-Chow interpolation for low Mach number flow computation allowing small time steps
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    Chapter 75 Study and Approximation of IMPES Stability: the CFL Criteria
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    Chapter 76 Numerical Solution of 2D and 3D Atmospheric Boundary Layer Stratified Flows
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    Chapter 77 On The Numerical Validation Study of Stratified Flow Over 2D–Hill Test Case
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    Chapter 78 A Multipoint Flux Approximation Finite Volume Scheme for Solving Anisotropic Reaction–Diffusion Systems in 3D
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    Chapter 79 Higher Order Chimera Grid Interface for Transonic Turbomachinery Applications
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    Chapter 80 Application of Nonlinear Monotone Finite Volume Schemes to Advection-Diffusion Problems
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    Chapter 81 Scale-selective Time Integration for Long-Wave Linear Acoustics
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    Chapter 82 Nonlocal Second Order Vehicular Traffic Flow Models And Lagrange-Remap Finite Volumes
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    Chapter 83 Unsteady Numerical Simulation of the Turbulent Flow aroundan Exhaust Valve
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    Chapter 84 Lowest order methods for diffusive problems on general meshes: A unified approach to definition and implementation
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    Chapter 85 A Unified Framework for a posteriori Error Estimation in Elliptic and Parabolic Problems with Application to Finite Volumes
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    Chapter 86 Staggered discretizations, pressure correction schemes and all speed barotropic flows
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    Chapter 87 ALE Method for Simulations of Laser-Produced Plasmas
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    Chapter 88 A two-dimensional finite volume solution of dam-break hydraulics over erodible sediment beds
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    Chapter 89 3D Benchmark on Discretization Schemes for Anisotropic Diffusion Problems on General Grids
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    Chapter 90 Benchmark 3D: a linear finite element solver
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    Chapter 91 Benchmark 3D: a version of the DDFV scheme with cell/vertex unknowns on general meshes
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    Chapter 92 Benchmark 3D: Symmetric Weighted Interior Penalty Discontinuous Galerkin Scheme
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    Chapter 93 Benchmark 3D: A Mimetic Finite Difference Method
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    Chapter 94 Benchmark 3D: A Composite Hexahedral Mixed Finite Element
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    Chapter 95 Benchmark 3D: CeVeFE-DDFV, a discrete duality scheme with cell/vertex/face+edge unknowns
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    Chapter 96 Benchmark 3D: The Cell-Centered Finite Volume Method Using Least Squares Vertex Reconstruction (“Diamond Scheme”)
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    Chapter 97 Benchmark 3D: A Monotone Nonlinear Finite Volume Method for Diffusion Equations on Polyhedral Meshes
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    Chapter 98 Benchmark 3D: the SUSHI Scheme
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    Chapter 99 Benchmark 3D: the VAG scheme
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    Chapter 100 Benchmark 3D: The Compact Discontinuous Galerkin 2 Scheme
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    Chapter 101 Benchmark 3D: Mimetic Finite Difference Method for Generalized Polyhedral Meshes
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    Chapter 102 Benchmark 3D: CeVe-DDFV, a Discrete Duality Scheme with Cell/Vertex Unknowns
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    Chapter 103 Benchmark 3D: A multipoint flux mixed finite element method on general hexahedra
Overall attention for this book and its chapters
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Title
Finite Volumes for Complex Applications VI Problems & Perspectives
Published by
Springer Berlin Heidelberg, July 2011
DOI 10.1007/978-3-642-20671-9
ISBNs
978-3-64-220670-2, 978-3-64-220671-9
Editors

Fořt, Jaroslav, Fürst, Jiří, Halama, Jan, Herbin, Raphaèle, Hubert, Florence

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The data shown below were compiled from readership statistics for 37 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
France 1 3%
Unknown 36 97%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 9 24%
Researcher 8 22%
Student > Master 6 16%
Lecturer 1 3%
Student > Doctoral Student 1 3%
Other 6 16%
Unknown 6 16%
Readers by discipline Count As %
Engineering 11 30%
Mathematics 7 19%
Computer Science 2 5%
Earth and Planetary Sciences 2 5%
Physics and Astronomy 2 5%
Other 3 8%
Unknown 10 27%