Bültmann & Gerriets
Structural Sensitivity Analysis and Optimization 1
Linear Systems
von Nam-Ho Kim, Kyung K. Choi
Verlag: Springer New York
Reihe: Mechanical Engineering Series
Hardcover
ISBN: 978-1-4419-2006-5
Auflage: Softcover reprint of hardcover 1st ed. 2005
Erschienen am 06.12.2010
Sprache: Englisch
Format: 235 mm [H] x 155 mm [B] x 26 mm [T]
Gewicht: 703 Gramm
Umfang: 468 Seiten

Preis: 235,39 €
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Inhaltsverzeichnis
Klappentext
Biografische Anmerkung

Structural Design and Analysis.- to Structural Design.- Variational Methods of Structural Systems.- Variational Equations and Finite Element Methods.- Design Sensitivity Analysis of Linear Structural Systems.- Discrete Design Sensitivity Analysis.- Continuum Sizing Design Sensitivity Analysis.- Continuum Shape Design Sensitivity Analysis.- Configuration Design Sensitivity Analysis.



Structural design sensitivity analysis concerns the relationship between design variables available to the design engineer and structural responses determined by the laws of mechanics. The dependence of response measures such as displacement, stress, strain, natural frequency, buckling load, acoustic response, frequency response, noise-vibration-harshness (NVH), thermo-elastic response, and fatigue life on the material property, sizing, component shape, and configuration design variables is defined through the governing equations of structural mechanics. In this 2-volume set, first- and second- order design sensitivity analyses are presented for static and dynamics responses of both linear and nonlinear elastic structural systems, including elasto-plastic and frictional contact problems.
Book I introduces structural design concepts that include the CAD-based design model, design parameterization, performance measures, costs, and constraints. It also discusses design sensitivity analysis of linear structural systems, and discrete and continuum design sensitivity analysis methods.



K. K. Choi is a Carver Professor of Mechanical Engineering at The University of Iowa. He teaches in the Mechanical and Industrial Engineering and the Applied Mathematical and Computational Sciences departments, and is a researcher in the Center for Computer-Aided Design. He has authored numerous publications and has twice won the ASME Best Paper Award.

N. H. Kim is an Assistant Professor in the Department of Mechanical and Aerospace Engineering at the University of Florida. His research area is in structural design optimization, design sensitivity analysis, nonlinear structural mechanics, structural-acoustics, and the mesh-free method.

Both authors are members of several industry organizations including the American Society of Mechanical Engineers, the Korean-American Scientists and Engineers Association and the International Society for Structural and Multidisciplinary Optimization.


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