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Metaheuristic Approaches for Optimum Design of Reinforced Concrete Structures: Emerging Research and Opportunities

Metaheuristic Approaches for Optimum Design of Reinforced Concrete Structures: Emerging Research and Opportunities

Copyright: © 2020 |Pages: 229
ISBN13: 9781799826644|ISBN10: 1799826643|EISBN13: 9781799826668
DOI: 10.4018/978-1-7998-2664-4
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MLA

Kayabekir, Aylin Ece, et al. Metaheuristic Approaches for Optimum Design of Reinforced Concrete Structures: Emerging Research and Opportunities. IGI Global, 2020. https://doi.org/10.4018/978-1-7998-2664-4

APA

Kayabekir, A. E., Bekdaş, G., & Nigdeli, S. M. (2020). Metaheuristic Approaches for Optimum Design of Reinforced Concrete Structures: Emerging Research and Opportunities. IGI Global. https://doi.org/10.4018/978-1-7998-2664-4

Chicago

Kayabekir, Aylin Ece, Gebrail Bekdaş, and Sinan Melih Nigdeli. Metaheuristic Approaches for Optimum Design of Reinforced Concrete Structures: Emerging Research and Opportunities. Hershey, PA: IGI Global, 2020. https://doi.org/10.4018/978-1-7998-2664-4

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Reinforced concrete structures are one of the major structural types and must adhere to design regulation codes. It is ideal to find the best design (section dimension, material type, and amount of reinforcement) with the minimum cost providing the design constraints (design formulation considering loading of structure). Metaheuristic methods inspired by natural phenomena can consider design constraints by combining the analyses of formulation of reinforced concrete structures with an iterative numerical algorithm using several convergence options of random generation of candidate design solutions.

Metaheuristic Approaches for Optimum Design of Reinforced Concrete Structures: Emerging Research and Opportunities is a pivotal reference source that focuses on several metaheuristic algorithms and the design of several types of structural members. Additionally, retrofit applications and seismic design issues are considered for readers in earthquake zones. Highlighting a wide range of topics including algorithms, design variables, and retrofit design, this book is ideally designed for architects, engineers, urban designers, government officials, policymakers, researchers, academicians, and students.

Table of Contents

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Front Materials
Title Page
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Copyright Page
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Advances in Chemical and Materials Engineering (ACME) Book Series
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Preface
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Chapters
Back Materials
Related Readings
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About the Authors
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Index
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