Mathematical Aspects of Boundary Element Methods
eBook - ePub

Mathematical Aspects of Boundary Element Methods

  1. 312 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

Mathematical Aspects of Boundary Element Methods

About this book

Boundary element methods relate to a wide range of engineering applications, including fluid flow, fracture analysis, geomechanics, elasticity, and heat transfer. Thus, new results in the field hold great importance not only to researchers in mathematics, but to applied mathematicians, physicists, and engineers.

A two-day minisymposium Mathematical Aspects of Boundary Element Methods at the IABEM conference in May 1998 brought together top rate researchers from around the world, including Vladimir Maz'ya, to whom the conference was dedicated. Focusing on the mathematical and numerical analysis of boundary integral operators, this volume presents 25 papers contributed to the symposium.

Mathematical Aspects of Boundary Element Methods provides up-to-date research results from the point of view of both mathematics and engineering. The authors detail new results, such as on nonsmooth boundaries, and new methods, including domain decomposition and parallelization, preconditioned iterative techniques, multipole expansions, higher order boundary elements, and approximate approximations. Together they illustrate the connections between the modeling of applied problems, the derivation and analysis of corresponding boundary integral equations, and their efficient numerical solutions.

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Information

Year
2024
eBook ISBN
9781000673142

Table of contents

  1. Cover
  2. Half Title
  3. Series
  4. Title
  5. Copyright
  6. Dedication
  7. Contents
  8. Preface
  9. Coupling Integral Equations Method and Finite Volume Elements for the Resolution of the Leontovich Boundary Value Problem for the Time-Harmonic Maxwell Equations in Three Dimensional Heteregeneous Media
  10. Smoothness Properties of Solutions to Variational Inequalities Describing Propagation of Mode-1 Cracks
  11. Edge Singularities and Kutta Condition for 3D Unsteady Flows in Aerodynamics
  12. Approximation using Diagonal-Plus-Skeleton Matrices
  13. Variational integral formulation in the problem of elastic scattering by a buried obstacle
  14. Sensitivity Analysis for Elastic Fields in Non Smooth Domains
  15. A Formulation for Crack Shape Sensitivity Analysis Based on Galerkin BIE, Domain Differentiation and Adjoint Variable
  16. Periodic and Stochastic BEM for Large Structures Embedded in an Elastic Half-Space
  17. Self-regularized hypersingular BEM for Laplace's equation
  18. An Adaptive Boundary Element Method for Contact Problems
  19. Fast Summation Methods and Integral Equations
  20. Hybrid Galerkin Boundary Elements on Degenerate Meshes
  21. The Poincaré-Steklov Operator within Countably Normed Spaces
  22. Boundary Layer Approximate Approximations for the Cubature of Potentials
  23. A Simplified Approach to the Semi-discrete Galerkin Method for the Single-layer Equation for a Plate
  24. Construction of Basis Functions for High Order Approximate Approximations
  25. Lp-Theory of Direct Boundary Integral Equations on a Contour with Peak
  26. Essential Norms of the Integral Operator Corresponding to the Neumann Problem for the Laplace Equation
  27. Polynomial Collocation Methods for 1D Integral Equations with Nonsmooth Solutions
  28. Singularities in Discretized BIEs for Laplace's Equation; Trailing-Edge Conditions in Aerodynamics
  29. Fluid-Structure Interaction Problems
  30. Extraction, Higher Order Boundary Element Methods and Adaptivity
  31. Asymptotic Solution of Boundary Integral Equations
  32. Sobolev Multipliers in the Theory of Integral Convolution Operators
  33. Stable Boundary Element Approximations of Steklov–Poincaré Operators

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Yes, you can access Mathematical Aspects of Boundary Element Methods by Marc Bonnet in PDF and/or ePUB format, as well as other popular books in Mathematics & Applied Mathematics. We have over 1.5 million books available in our catalogue for you to explore.