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Numerical Methods for Flows

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Cover of 'Numerical Methods for Flows'

Table of Contents

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    Book Overview
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    Chapter 1 Simulation of Complex High Reynolds Flows with a VMS Method and Adaptive Meshing
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    Chapter 2 Comparison of Coupled and Decoupled Solvers for Incompressible Navier–Stokes Equations Solved by Isogeometric Analysis
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    Chapter 3 High-Order Isogeometric Methods for Compressible Flows
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    Chapter 4 High-Order Isogeometric Methods for Compressible Flows
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    Chapter 5 Simulations of Non-hydrostatic Flows by an Efficient and Accurate p -Adaptive DG Method
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    Chapter 6 A Fully Semi-Lagrangian Method for the Navier–Stokes Equations in Primitive Variables
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    Chapter 7 Mesh Adaptation for k -Exact CFD Approximations
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    Chapter 8 Entropy Stable Discontinuous Galerkin Finite Element Moment Methods for Compressible Fluid Dynamics
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    Chapter 9 Space-Time NURBS-Enhanced Finite Elements for Solving the Compressible Navier–Stokes Equations
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    Chapter 10 Fluid Flow Simulation from Geometry Data Based on Point Clouds
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    Chapter 11 Thermomechanically-Consistent Phase-Field Modeling of Thin Film Flows
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    Chapter 12 On the Sensitivity to Model Parameters in a Filter Stabilization Technique for Advection Dominated Advection-Diffusion-Reaction Problems
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    Chapter 13 One-Dimensional Line SIAC Filtering for Multi-Dimensions: Applications to Streamline Visualization
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    Chapter 14 A High Performance Computing Framework for Finite Element Simulation of Blood Flow in the Left Ventricle of the Human Heart
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    Chapter 15 Phase Field-Based Incompressible Two-Component Liquid Flow Simulation
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    Chapter 16 A Study on the Performance Portability of the Finite Element Assembly Process Within the Albany Land Ice Solver
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    Chapter 17 A Multimesh Finite Element Method for the Stokes Problem
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    Chapter 18 A Variational Multi-Scale Anisotropic Mesh Adaptation Scheme for Aerothermal Problems
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    Chapter 19 Density-Based Inverse Homogenization with Anisotropically Adapted Elements
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    Chapter 20 Bathymetry Reconstruction Using Inverse ShallowWater Models: Finite Element Discretization and Regularization
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    Chapter 21 Enabling Scalable Multifluid Plasma Simulations Through Block Preconditioning
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    Chapter 22 The Effort of Increasing Reynolds Number in Projection-Based Reduced Order Methods: From Laminar to Turbulent Flows
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    Chapter 23 Optimization Based Particle-Mesh Algorithm for High-Order and Conservative Scalar Transport
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    Chapter 24 Krylov Smoothing for Fully-Coupled AMG Preconditioners for VMS Resistive MHD
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    Chapter 25 Double Layer Potential Density Reconstruction Procedure for 3D Vortex Methods
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    Chapter 26 Balancing Domain Decomposition Method on Additive Schwartz Framework for Multi-Level Implementation
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    Chapter 27 Algebraic Dual Polynomials for the Equivalence of Curl-Curl Problems
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    Chapter 28 Multiple-Precision Iterative Methods for Solving Complex Symmetric Electromagnetic Systems
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    Chapter 29 Gradient-Based Limiting and Stabilization of Continuous Galerkin Methods
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    Chapter 30 High Order CG Schemes for KdV and Saint-Venant Flows
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Title
Numerical Methods for Flows
Published by
Springer International Publishing, February 2020
DOI 10.1007/978-3-030-30705-9
ISBNs
978-3-03-030704-2, 978-3-03-030705-9
Editors

van Brummelen, Harald, Corsini, Alessandro, Perotto, Simona, Rozza, Gianluigi

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 5 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 5 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 1 20%
Student > Postgraduate 1 20%
Lecturer > Senior Lecturer 1 20%
Unknown 2 40%
Readers by discipline Count As %
Environmental Science 1 20%
Mathematics 1 20%
Engineering 1 20%
Unknown 2 40%