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Structural Optimization Franklin Y. Cheng (University of Missouri, Rolla, Missouri, USA)

Structural Optimization By Franklin Y. Cheng (University of Missouri, Rolla, Missouri, USA)

Summary

Today's biggest structural engineering challenge is to design stronger structures, and a key issue is the need to take an integrated approach that balances control of costs with the requirement for withstanding earthquakes and other dynamic forces. Structural optimization is based on rigorous mathematical formulation and requires computation alg

Structural Optimization Summary

Structural Optimization: Dynamic and Seismic Applications by Franklin Y. Cheng (University of Missouri, Rolla, Missouri, USA)

Today's biggest structural engineering challenge is to design better structures, and a key issue is the need to take an integrated approach which balances control of costs with the requirement for handling earthquakes and other dynamic forces. Structural optimization is based on rigorous mathematical formulation and requires computation algorithms for sizing structural elements and synthesizing systems. Now that the right software and enough computing power are readily available, professionals can now develop a suite of alternative designs and a select suitable one.

A thoroughly-written and practical book on structural optimization is long overdue. This solid book comprehensively presents current optimization strategies, illustrated with sufficient examples of the design of elements and systems and presenting descriptions of the process and results. Emphasis is given to dynamic loading, in particular to seismic forces.

Researchers and practising engineers will find this book an excellent reference, and advanced undergraduates or graduate students can use it as a resource for structural optimization design.

About Franklin Y. Cheng (University of Missouri, Rolla, Missouri, USA)

Franklin Y. Cheng is Curators' Professor Emeritus at the Missouri University of Science and Technology, USA. He is a Distinguished Member of the American Society of Civil Engineers, and is the author of several books including Matrix Analysis of Structural Dynamics: Applications and Earthquake Engineering.

Kevin Z. Truman is Dean of the School of Computing and Engineering at the University of Missouri - Kansas City, USA.

Table of Contents

1. Introduction to Structural Optimization 2. Fundamentals of Linear Programming 3. Linear Programming Optimization of Elastic Structural Systems 4. Introduction to Nonlinear Programming 5. Optimization of Rigid Frames 6. Gradient Based Search Techniques 7. Energy Distribution for Optimality Criterion 8. Generalized Optimality Criteria Approach 9. Generalized Optimality Criteria Applied to Statically and Dynamically Loaded Structural Systems 10. Generalized Optimality Criteria Techniques 11. Nondeterministic Structural Optimization and Parametric Assessments 12. Multiobjective Optimization with Genetic Algorithm, Fuzzy Logic and Game Theory. Appendices

Additional information

NLS9780367865139
9780367865139
0367865130
Structural Optimization: Dynamic and Seismic Applications by Franklin Y. Cheng (University of Missouri, Rolla, Missouri, USA)
New
Paperback
Taylor & Francis Ltd
2019-12-12
708
N/A
Book picture is for illustrative purposes only, actual binding, cover or edition may vary.
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