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Structural Sensitivity Analysis and Optimization 2: Nonlinear Systems and Applications

โœ Scribed by Kyung K. Choi, Nam Ho Kim (auth.)


Publisher
Springer-Verlag New York
Year
2005
Tongue
English
Leaves
335
Series
Mechanical Engineering Series
Edition
1
Category
Library

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โœฆ Synopsis


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 energy principles (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 2, Nonlinear Systems and Applications, covers design sensitivity analysis of nonlinear structural systems using continuum design sensitivity analysis methods. It also discusses practical design tools and applications; sizing and shape design parameterization, design velocity field computation, numerical implementation of the sensitivity for general-purpose code development, and various other practical design applications.

About the Authors:

K.K. Choi is a Carver Professor of Mechanical Engineering at The University of Iowa. He teaches in the Mechanical and Industrial Engineering Department, and is a researcher in the Center for Computer Aided Design. His research area is in mechanical system analysis, design sensitivity analysis, and reliability based design optimization. He has authored numerous publications and has twice won the ASME Best Paper Award. He is an associate editor for four national and international journals, a fellow of ASME, and associate fellow of AIAA.

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 mesh-free method.

Both authors are members of several professional societies including the American Society of Mechanical Engineers, American Institute of Aeronautics and Astronautics, the International Society for Structural and Multidisciplinary Optimization, and Society of Automotive Engineering.

โœฆ Table of Contents


Front Matter....Pages 447-447
Nonlinear Structural Analysis....Pages 449-495
Nonlinear Sizing Design Sensitivity Analysis....Pages 497-531
Nonlinear Shape Design Sensitivity Analysis....Pages 533-589
Nonlinear Configuration Design Sensitivity Analysis....Pages 591-616
Front Matter....Pages 617-617
Design Parameterization....Pages 619-651
Numerical Implementation of Sensitivity Analysis....Pages 653-693
Design Applications....Pages 695-760

โœฆ Subjects


Structural Mechanics; Mechanical Engineering; Engineering Design; Automotive and Aerospace Engineering, Traffic; Civil Engineering


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Structural sensitivity analysis and opti
โœ Choi K.K., Kim N.H. ๐Ÿ“‚ Library ๐Ÿ“… 2005 ๐Ÿ› Springer ๐ŸŒ English

Extensive numerical methods for computing design sensitivity are included in the text for practical application and software development.ย  The numerical method allows integration of CAD-FEA-DSA software tools, so that design optimization can be carried out using CAD geometric models instead of FEA m

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