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The aim of the present book is to show, in a broad and yet deep way, the state of the art in computational science and engineering. Examples of topics addressed are: fast and accurate numerical algorithms, model-order reduction, grid computing, immersed-boundary methods, and specific computational methods for simulating a wide variety of challenging problems, problems such as: fluid-structure interaction, turbulent flames, bone-fracture healing, micro-electro-mechanical systems, failure of composite materials, storm surges, particulate flows, and so on. The main benefit offered to readers of the book is a well-balanced, up-to-date overview over the field of computational science and engineering, through in-depth articles by specialists from the separate disciplines.




The aim of the present book is to show, in a broad and yet deep way, the state of the art in computational science and engineering. Examples of topics addressed are: fast and accurate numerical algorithms, model-order reduction, grid computing, immersed-boundary methods, and specific computational methods for simulating a wide variety of challenging problems, problems such as: fluid-structure interaction, turbulent flames, bone-fracture healing, micro-electro-mechanical systems, failure of composite materials, storm surges, particulate flows, and so on. The main benefit offered to readers of the book is a well-balanced, up-to-date overview over the field of computational science and engineering, through in-depth articles by specialists from the separate disciplines.




The aim of the present book is to show, in a broad and yet deep way, the state of the art in computational science and engineering. Examples of topics addressed are: fast and accurate numerical algorithms, model-order reduction, grid computing, immersed-boundary methods, and specific computational methods for simulating a wide variety of challenging problems, problems such as: fluid-structure interaction, turbulent flames, bone-fracture healing, micro-electro-mechanical systems, failure of composite materials, storm surges, particulate flows, and so on. The main benefit offered to readers of the book is a well-balanced, up-to-date overview over the field of computational science and engineering, through in-depth articles by specialists from the separate disciplines.


Content:
Front Matter....Pages 1-8
A Model-Order Reduction Approach to Parametric Electromagnetic Inversion....Pages 1-19
Shifted-Laplacian Preconditioners for Heterogeneous Helmholtz Problems....Pages 21-46
On Numerical Issues in Time Accurate Laminar Reacting Gas Flow Solvers....Pages 47-78
Parallel Scientific Computing on Loosely Coupled Networks of Computers....Pages 79-106
Data Assimilation Algorithms for Numerical Models....Pages 107-142
Radial Basis Functions for Interface Interpolation and Mesh Deformation....Pages 143-178
Least-Squares Spectral Element Methods in Computational Fluid Dynamics....Pages 179-227
Finite-Volume Discretizations and Immersed Boundaries....Pages 229-268
Large Eddy Simulation of Turbulent Non-Premixed Jet Flames with a High Order Numerical Method....Pages 269-287
A Suite of Mathematical Models for Bone Ingrowth, Bone Fracture Healing and Intra-Osseous Wound Healing....Pages 289-314
Numerical Modeling of the Electromechanical Interaction in MEMS....Pages 315-342
Simulation of Progressive Failure in Composite Laminates....Pages 343-371
Numerical Modeling of Wave Propagation, Breaking and Run-Up on a Beach....Pages 373-401
Hybrid Navier-Stokes/DSMC Simulations of Gas Flows with Rarefied-Continuum Transitions....Pages 403-435
Multi-Scale PDE-Based Design of Hierarchically Structured Porous Catalysts....Pages 437-452
From Molecular Dynamics and Particle Simulations towards Constitutive Relations for Continuum Theory....Pages 453-492
Back Matter....Pages 1-6


The aim of the present book is to show, in a broad and yet deep way, the state of the art in computational science and engineering. Examples of topics addressed are: fast and accurate numerical algorithms, model-order reduction, grid computing, immersed-boundary methods, and specific computational methods for simulating a wide variety of challenging problems, problems such as: fluid-structure interaction, turbulent flames, bone-fracture healing, micro-electro-mechanical systems, failure of composite materials, storm surges, particulate flows, and so on. The main benefit offered to readers of the book is a well-balanced, up-to-date overview over the field of computational science and engineering, through in-depth articles by specialists from the separate disciplines.


Content:
Front Matter....Pages 1-8
A Model-Order Reduction Approach to Parametric Electromagnetic Inversion....Pages 1-19
Shifted-Laplacian Preconditioners for Heterogeneous Helmholtz Problems....Pages 21-46
On Numerical Issues in Time Accurate Laminar Reacting Gas Flow Solvers....Pages 47-78
Parallel Scientific Computing on Loosely Coupled Networks of Computers....Pages 79-106
Data Assimilation Algorithms for Numerical Models....Pages 107-142
Radial Basis Functions for Interface Interpolation and Mesh Deformation....Pages 143-178
Least-Squares Spectral Element Methods in Computational Fluid Dynamics....Pages 179-227
Finite-Volume Discretizations and Immersed Boundaries....Pages 229-268
Large Eddy Simulation of Turbulent Non-Premixed Jet Flames with a High Order Numerical Method....Pages 269-287
A Suite of Mathematical Models for Bone Ingrowth, Bone Fracture Healing and Intra-Osseous Wound Healing....Pages 289-314
Numerical Modeling of the Electromechanical Interaction in MEMS....Pages 315-342
Simulation of Progressive Failure in Composite Laminates....Pages 343-371
Numerical Modeling of Wave Propagation, Breaking and Run-Up on a Beach....Pages 373-401
Hybrid Navier-Stokes/DSMC Simulations of Gas Flows with Rarefied-Continuum Transitions....Pages 403-435
Multi-Scale PDE-Based Design of Hierarchically Structured Porous Catalysts....Pages 437-452
From Molecular Dynamics and Particle Simulations towards Constitutive Relations for Continuum Theory....Pages 453-492
Back Matter....Pages 1-6
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