Numerical Methods in Transient and Coupled Problems
Wiley (Publisher)
Published on 15. April 1987
Book
Hardback
366 pages
978-0-471-91200-2 (ISBN)
Description
This edited volume describes the latest developments in the use of numerical techniques for the solution of problems in transient and coupled systems. A wide range of topics is covered, from the methods used for the analysis of various types of flow, to the problems encountered in the analysis of solids such as reinforced concrete. While most chapters address practical problems encountered in everyday engineering work, some deal specifically with the mathematical and computational aspects of transient and coupled problems. The contributors are all internationally renowned experts in the subjects on which they write.
More details
Series
Language
English
Place of publication
Chichester
United Kingdom
Publishing group
John Wiley and Sons Ltd
Target group
College/higher education
Professional and scholarly
Illustrations
illustrations, index
Dimensions
Height: 240 mm
Width: 160 mm
Weight
720 gr
ISBN-13
978-0-471-91200-2 (9780471912002)
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Schweitzer Classification
Content
Mesh Refinement and Redistribution; Efficient Techniques for the Analysis of Pollutant Migration; Direct General Finite Difference Techniques for Elliptic Problems Defined in Bounded and Unbounded Two-Dimensional Domains; Solution Strategies for Elastic and Inelastic Contact Problems of Solids; Recent Developments in Finite Difference Methods for the Computation of Transient Flows; Numerical Analysis of Rain Effects on an Airfoil; Solution Techniques for Boundary Integral Matrices; Some Transient and Coupled Problems - A State-of-the- Art Review; The Prediction of Instabilities using Bifurcation Theory; Long Time Calculations and Non-linear Maps; Modelling of Coupled Thermo-elastoplastic-hydraulic Response of Clays Subjected to Nuclear Waste Heat; Numerical Modelling of Free- Surface Flows; Transient Algorithms and Fluid-Structure Interaction - An Overview; Nonlinear Transient Dynamic Analysis of Reinforced Concrete Structures using a Three-Dimensional Approach.