| A Blended Fictitious/Real Domain Decomposition Method for Partially Axisymmetric Exterior Helmholtz Problems with Dirichlet Boundary Conditions | p. 1 |
| Introduction | p. 1 |
| The Sound-Soft Acoustic Scattering Problem | p. 2 |
| A Fictitious Domain Decomposition Method | p. 3 |
| A Blended Fictitious/Real Domain Decomposition Method | p. 10 |
| Applications | p. 15 |
| Conclusions | p. 24 |
| References | p. 25 |
| Dual-Primal FETI Methods with Face Constraints | p. 27 |
| Introduction | p. 27 |
| Elliptic Model Problem, Finite Elements, and Geometry | p. 28 |
| New Dual-Primal FETI Methods | p. 30 |
| Some Auxiliary Lemmas | p. 34 |
| Convergence Analysis | p. 35 |
| References | p. 40 |
| A FETI - DP Method for a Mortar Discretization of Elliptic Problems | p. 41 |
| Introduction | p. 41 |
| Differential and Discrete Problems | p. 42 |
| A Dual-Primal Formulation of the Problem | p. 43 |
| Convergence Analysis: the Upper Bound | p. 45 |
| Convergence Analysis: the Lower Bound | p. 48 |
| References | p. 52 |
| Balancing Neumann-Neumann Methods for Mixed Approximations of Linear Elasticity | p. 53 |
| Introduction | p. 53 |
| Mixed Methods for Linear Elasticity: Continuous and Discrete Problems | p. 54 |
| Substructuring for Saddle Point Problems | p. 59 |
| A Neumann-Neumann Preconditioner | p. 62 |
| Main Result | p. 66 |
| Variable Coefficient and Composite Materials | p. 66 |
| Numerical Experiments | p. 67 |
| References | p. 74 |
| Partition of Unity Coarse Spaces and Schwarz Methods with Harmonic Overlap | p. 77 |
| Introduction | p. 77 |
| Notations | p. 79 |
| Overlapping Additive Schwarz (AS) Methods | p. 80 |
| AS Methods with Harmonic Overlap (ASHO) | p. 81 |
| Hybrid Methods with PU Coarse Spaces | p. 82 |
| Remarks about ASHO Methods | p. 83 |
| Theoretical Analysis | p. 84 |
| Numerical Experiments and Final Remarks | p. 89 |
| References | p. 94 |
| Convergence of Some Two-Level Overlapping Domain Decomposition Preconditioners with Smoothed Aggregation Coarse Spaces | p. 95 |
| Introduction | p. 95 |
| Problem Setting and Two-Level Overlapping Preconditioners | p. 98 |
| A Convergence Result | p. 99 |
| Smoothed Aggregation | p. 102 |
| An Improved Convergence Result | p. 106 |
| Some Choices for the Smoother | p. 108 |
| Numerical Results | p. 113 |
| References | p. 114 |
| Wavelet/FEM Coupling by the Mortar Method | p. 119 |
| Introduction | p. 119 |
| The Mortar Method with Approximate Constraint | p. 120 |
| Wavelet/FEM Coupling | p. 125 |
| References | p. 131 |
| Non-Conforming hp Finite Element Methods for Stokes Problems | p. 133 |
| Introduction | p. 133 |
| The Stokes Problem and its Non-Conforming hp Discretization | p. 134 |
| Convergence Estimates | p. 137 |
| Mixed Method Implementation | p. 138 |
| Numerical Results | p. 138 |
| References | p. 144 |
| A Defect Correction Method for Multi-Scale Problems in Computational Aeroacoustics | p. 147 |
| Introduction | p. 147 |
| The Defect Correction Method | p. 148 |
| Coarse Grid Sound Source Retrieval | p. 151 |
| Numerical Experiments | p. 152 |
| Conclusions | p. 156 |
| References | p. 156 |
| Domain Decomposition Methods for Time-Harmonic Maxwell Equations: Numerical Results | p. 157 |
| The Time-Harmonic Maxwell Equations in a Conductor | p. 157 |
| Domain Decomposition Algorithms for the Time-Harmonic Maxwell Equations in a Conductor | p. 158 |
| Numerical Results for the Time-Harmonic Maxwell Equations in a Conductor | p. 160 |
| The Eddy-Current Problem and a Domain Decomposition Algorithm for its Solution | p. 165 |
| Numerical Results for the Eddy Current Problem | p. 167 |
| References | p. 171 |
| Iterated Frequency Filtering Preconditioners | p. 173 |
| Introduction | p. 173 |
| Filtering Factorizations | p. 175 |
| Adaptive Filtering | p. 179 |
| The Dimension-wise Iterated Frequency Filtering Preconditioner | p. 180 |
| The Complete Algorithm | p. 181 |
| Numerical Experiments Without Adaptivity | p. 182 |
| Numerical Experiments with the Adaptive Method | p. 184 |
| References | p. 186 |
| A "Parareal" Time Discretization for Non-Linear PDE's with Application to the Pricing of an American Put | p. 189 |
| Introduction | p. 189 |
| Problem Formulation | p. 190 |
| Analysis of the Algorithm for Linear PDE's | p. 191 |
| Application to a Nonlinear Parabolic Problem | p. 197 |
| Pricing of an American Put | p. 197 |
| References | p. 201 |
| The Influence of Quadrature Formulas in 2D and 3D Mortar Element Methods | p. 203 |
| Introduction | p. 203 |
| Problem Formulation and Notation | p. 204 |
| Problem Discretization | p. 205 |
| Matrix Form of the Discrete Problem | p. 211 |
| Numerical Results in 3D | p. 213 |
| Numerical Results in 2D | p. 218 |
| References | p. 221 |
| Portable Efficient Solvers for Adaptive Finite Element Simulations of Elastostatics in Two and Three Dimensions | p. 223 |
| Introduction | p. 223 |
| Model Problem and Finite Element Approximation | p. 224 |
| Solution Algorithms | p. 227 |
| Portable Hybrid Solvers | p. 230 |
| Numerical Results | p. 236 |
| Conclusions and Future Work | p. 241 |
| References | p. 242 |
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