Least-Squares Finite Element Methods
Book information
Description
The book examines theoretical and computational aspects of least-squares finite element methods(LSFEMs) for partial differential equations (PDEs) arising in key science and engineering applications. It is intended for mathematicians, scientists, and engineers interested in either or both the theory and practice associated with the numerical solution of PDEs. The first part looks at strengths and weaknesses of classical variational principles, reviews alternative variational formulations, and offers a glimpse at the main concepts that enter into the formulation of LSFEMs. Subsequent parts introduce mathematical frameworks for LSFEMs and their analysis, apply the frameworks to concrete PDEs, and discuss computational properties of resulting LSFEMs. Also included are recent advances such as compatible LSFEMs, negative-norm LSFEMs, and LSFEMs for optimal control and design problems. Numerical examples illustrate key aspects of the theory ranging from the importance of norm-equivalence to connections between compatible LSFEMs and classical-Galerkin and mixed-Galerkin methods. Pavel Bochev is a Distinguished Member of the Technical Staff at Sandia National Laboratories with research interests in compatible discretizations for PDEs, multiphysics problems, and scientific computing. Max Gunzburger is Frances Eppes Professor of Scientific Computing and Mathematics at Florida State University and recipient of the W.T. and Idelia Reid Prize in Mathematics from the Society for Industrial and Applied Mathematics.
Similar books
Least-Squares Finite Element Methods
2009 · DJVU
Least-Squares Finite Element Methods (Applied Mathematical Sciences)
2009 · PDF
Incompressible Computational Fluid Dynamics: Trends and Advances
1993 · DJVU
Perspectives in Flow Control and Optimization (Advances in Design and Control)
2002 · PDF
Finite Element Methods for Viscous Incompressible Flows: A Guide to Theory, Practice, and Algorithms (Computer Science and Scientific Computing)
1989 · DJVU
Least-Squares Finite Element Methods
2009 · PDF
Least-squares finite element methods
2009 · PDF
Perspectives in flow control and optimization
2003 · DJVU