Continuation Methods in Fluid Dynamics PDF Download

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Continuation Methods in Fluid Dynamics

Continuation Methods in Fluid Dynamics PDF Author: Daniel Henry
Publisher:
ISBN:
Category : Computational methods
Languages : en
Pages : 288

Book Description


Continuation Methods in Fluid Dynamics

Continuation Methods in Fluid Dynamics PDF Author: Daniel Henry
Publisher:
ISBN:
Category : Computational methods
Languages : en
Pages : 288

Book Description


Continuation Methods in Computational Fluid Dynamics

Continuation Methods in Computational Fluid Dynamics PDF Author: Herbert B. Keller
Publisher:
ISBN:
Category :
Languages : en
Pages : 13

Book Description


Continuation Methods in Fluid Dynamics

Continuation Methods in Fluid Dynamics PDF Author: Daniel Henry
Publisher:
ISBN:
Category : Computational methods
Languages : en
Pages : 298

Book Description


Multi-level ILU Preconditioners and Continuation Methods in Fluid Dynamics

Multi-level ILU Preconditioners and Continuation Methods in Fluid Dynamics PDF Author: Geesien Tiesinga
Publisher:
ISBN: 9789036712040
Category :
Languages : en
Pages : 0

Book Description


Introduction to Numerical Continuation Methods

Introduction to Numerical Continuation Methods PDF Author: Eugene L. Allgower
Publisher: SIAM
ISBN: 089871544X
Category : Mathematics
Languages : en
Pages : 409

Book Description
Numerical continuation methods have provided important contributions toward the numerical solution of nonlinear systems of equations for many years. The methods may be used not only to compute solutions, which might otherwise be hard to obtain, but also to gain insight into qualitative properties of the solutions. Introduction to Numerical Continuation Methods, originally published in 1979, was the first book to provide easy access to the numerical aspects of predictor corrector continuation and piecewise linear continuation methods. Not only do these seemingly distinct methods share many common features and general principles, they can be numerically implemented in similar ways. Introduction to Numerical Continuation Methods also features the piecewise linear approximation of implicitly defined surfaces, the algorithms of which are frequently used in computer graphics, mesh generation, and the evaluation of surface integrals.

Numerical Methods in Fluid Dynamics

Numerical Methods in Fluid Dynamics PDF Author: J. J. Smolderen
Publisher:
ISBN:
Category : Fluid dynamics
Languages : en
Pages : 356

Book Description


Numerical Continuation Methods

Numerical Continuation Methods PDF Author: Eugene L. Allgower
Publisher: Springer Science & Business Media
ISBN: 3642612571
Category : Mathematics
Languages : en
Pages : 402

Book Description
Over the past fifteen years two new techniques have yielded extremely important contributions toward the numerical solution of nonlinear systems of equations. This book provides an introduction to and an up-to-date survey of numerical continuation methods (tracing of implicitly defined curves) of both predictor-corrector and piecewise-linear types. It presents and analyzes implementations aimed at applications to the computation of zero points, fixed points, nonlinear eigenvalue problems, bifurcation and turning points, and economic equilibria. Many algorithms are presented in a pseudo code format. An appendix supplies five sample FORTRAN programs with numerical examples, which readers can adapt to fit their purposes, and a description of the program package SCOUT for analyzing nonlinear problems via piecewise-linear methods. An extensive up-to-date bibliography spanning 46 pages is included. The material in this book has been presented to students of mathematics, engineering and sciences with great success, and will also serve as a valuable tool for researchers in the field.

The Finite Element Method in Heat Transfer and Fluid Dynamics, Second Edition

The Finite Element Method in Heat Transfer and Fluid Dynamics, Second Edition PDF Author: J. N. Reddy
Publisher: CRC Press
ISBN: 9780849323553
Category : Science
Languages : en
Pages : 496

Book Description
The numerical simulation of fluid mechanics and heat transfer problems is now a standard part of engineering practice. The widespread availability of capable computing hardware has led to an increased demand for computer simulations of products and processes during their engineering design and manufacturing phases. The range of fluid mechanics and heat transfer applications of finite element analysis has become quite remarkable, with complex, realistic simulations being carried out on a routine basis. The award-winning first edition of The Finite Element Method in Heat Transfer and Fluid Dynamics brought this powerful methodology to those interested in applying it to the significant class of problems dealing with heat conduction, incompressible viscous flows, and convection heat transfer. The Second Edition of this bestselling text continues to provide the academic community and industry with up-to-date, authoritative information on the use of the finite element method in the study of fluid mechanics and heat transfer. Extensively revised and thoroughly updated, new and expanded material includes discussions on difficult boundary conditions, contact and bulk nodes, change of phase, weighted-integral statements and weak forms, chemically reactive systems, stabilized methods, free surface problems, and much more. The Finite Element Method in Heat Transfer and Fluid Dynamics offers students a pragmatic treatment that views numerical computation as a means to an end and does not dwell on theory or proof. Mastering its contents brings a firm understanding of the basic methodology, competence in using existing simulation software, and the ability to develop some simpler, special purpose computer codes.

Adaptive High-order Methods in Computational Fluid Dynamics

Adaptive High-order Methods in Computational Fluid Dynamics PDF Author: Z. J. Wang
Publisher: World Scientific
ISBN: 9814313181
Category : Science
Languages : en
Pages : 471

Book Description
This book consists of important contributions by world-renowned experts on adaptive high-order methods in computational fluid dynamics (CFD). It covers several widely used, and still intensively researched methods, including the discontinuous Galerkin, residual distribution, finite volume, differential quadrature, spectral volume, spectral difference, PNPM, and correction procedure via reconstruction methods. The main focus is applications in aerospace engineering, but the book should also be useful in many other engineering disciplines including mechanical, chemical and electrical engineering. Since many of these methods are still evolving, the book will be an excellent reference for researchers and graduate students to gain an understanding of the state of the art and remaining challenges in high-order CFD methods.

Instability, Nonexistence and Weighted Energy Methods in Fluid Dynamics and Related Theories

Instability, Nonexistence and Weighted Energy Methods in Fluid Dynamics and Related Theories PDF Author: Brian Straughan
Publisher: Pitman Advanced Publishing Program
ISBN:
Category : Mathematics
Languages : en
Pages : 188

Book Description