Author | : George Karniadakis |
Publisher | : Oxford University Press on Demand |
Total Pages | : 390 |
Release | : 1999 |
ISBN 10 | : 9780195102260 |
ISBN 13 | : 0195102266 |
Language | : EN, FR, DE, ES & NL |
Language: en
Pages: 390
Pages: 390
This book is an essential reference for anyone interested in the use of spectral/hp element methods in fluid dynamics. It provides a comprehensive introduction
Language: en
Pages: 680
Pages: 680
Revision of: Spectral/hp element methods for CFD. 1999.
Language: en
Pages: 7
Pages: 7
Multi-Element Polynomial Chaos: Generalized polynomial chaos (gPC) or Wiener-Askey expansions is a method developed by the PI and his students. This method is s
Language: en
Pages: 832
Pages: 832
Incorporating new topics and original material, Introduction to Finite and Spectral Element Methods Using MATLAB, Second Edition enables readers to quickly unde
Language: en
Pages: 376
Pages: 376
This volume on some recent aspects of finite element methods and their applications is dedicated to Ulrich Langer and Arnd Meyer on the occasion of their 60th b
Language: en
Pages: 584
Pages: 584
The Finite Element Method for Fluid Dynamics offers a complete introduction the application of the finite element method to fluid mechanics. The book begins wit
Language: en
Pages: 326
Pages: 326
Many partial differential equations arising in practice are parameter-dependent problems that are of singularly perturbed type. Prominent examples include plate
Language: en
Pages: 425
Pages: 425
The book contains a selection of high quality papers, chosen among the best presentations during the International Conference on Spectral and High-Order Methods
Language: en
Pages: 498
Pages: 498
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
Language: en
Pages: 381
Pages: 381
This monograph presents numerical methods for solving transient wave equations (i.e. in time domain). More precisely, it provides an overview of continuous and