Structural Dynamic Systems Computational Techniques and Optimization : Finite Element Analysis Techniques.

The finite element, an approximation method for solving differential equations of mathematical physics, is a highly effective technique in the analysis and design, or synthesis, of structural dynamic systems. Starting from the system differential equations and its boundary conditions, what is referr...

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Bibliographic Details
Corporate Author: Taylor & Francis
Other Authors: Leondes, Cornelius T.
Format: eBook
Language:English
Published: [Place of publication not identified] : Routledge, 2021.
Edition:First edition.
Subjects:
Online Access:Connect to the full text of this electronic book
Description
Summary:The finite element, an approximation method for solving differential equations of mathematical physics, is a highly effective technique in the analysis and design, or synthesis, of structural dynamic systems. Starting from the system differential equations and its boundary conditions, what is referred to as a weak form of the problem (elaborated in the text) is developed in a variational sense. This variational statement is used to define elemental properties that may be written as matrices and vectors as well as to identify primary and secondary boundaries and all possible boundary conditions. Specific equilibrium problems are also solved. This book clearly reveals the effectiveness and great significance of the finite element method available and the essential role it will play in the future as further development occurs.
Physical Description:1 online resource (336 pages)
ISBN:9780203738108
0203738101
9781351413220
1351413228
9781351413237
1351413236
9781351413244
1351413244