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Optimization aided design = reinforc...
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Gaganelis, Georgios.
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Optimization aided design = reinforced concrete /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Optimization aided design/ Georgios Gaganelis, Peter Mark, and Patrick Forman.
其他題名:
reinforced concrete /
作者:
Gaganelis, Georgios.
其他作者:
Mark, Peter.
出版者:
Berlin, Germany :Ernst & Sohn, John Wiey & Sons, : c2022.,
面頁冊數:
1 online resource (227 p.)
標題:
Reinforced concrete. -
電子資源:
https://onlinelibrary.wiley.com/doi/book/10.1002/9783433610725
ISBN:
9783433610725
Optimization aided design = reinforced concrete /
Gaganelis, Georgios.
Optimization aided design
reinforced concrete /[electronic resource] :Georgios Gaganelis, Peter Mark, and Patrick Forman. - 1st ed. - Berlin, Germany :Ernst & Sohn, John Wiey & Sons,c2022. - 1 online resource (227 p.)
Includes bibliographical references and index.
Concrete is the most used building material. Its main component, cement, however, accounts production- related for up to 10 % of global CO2 emissions and is therefore a major contributor to human-induced climate change. Due to its low tensile strength, concrete must be further enhanced in tension with adequate reinforcement, such as steel. Producing the latter therefore additionally impacts the environment. Consequently, reducing the material amount for design and construction of structures, thus lowering material- and transport-induced emissions, represents a key element to climate protection. In this context, meeting the essential requirements? sustainability, serviceability, durability? is yet indispensable. The book presents innovative optimization aided design methods for concrete structures. Mathematical optimization is applied to practical problems of structural concrete at each level: from external, through internal structure identification to cross-section design. It is shown how to design resource-efficient structures following the flux of forces, how to optimally adapt reinforcement layouts to the internal force flow, and how to efficiently cope with demanding cross-sectional design tasks such as biaxial bending. The optimization aided design methods are discussed in detail and described vividly. They are independent of standards, concrete material (normal to ultra-high performance) and reinforcement type (steel fibers to carbon bars), thus universally applicable. The book illustrates the different approaches with numerous figures and calculation examples. Existing applications in structural engineering are presented to demonstrate the potential of optimization aided design concepts, including ultra-lightweight hybrid beams, thin concrete solar collectors, and improved reinforcement layouts for tunnel lining segments.
ISBN: 9783433610725Subjects--Topical Terms:
861675
Reinforced concrete.
LC Class. No.: TA683 / .G343 2022
Dewey Class. No.: 624.18341
Optimization aided design = reinforced concrete /
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Concrete is the most used building material. Its main component, cement, however, accounts production- related for up to 10 % of global CO2 emissions and is therefore a major contributor to human-induced climate change. Due to its low tensile strength, concrete must be further enhanced in tension with adequate reinforcement, such as steel. Producing the latter therefore additionally impacts the environment. Consequently, reducing the material amount for design and construction of structures, thus lowering material- and transport-induced emissions, represents a key element to climate protection. In this context, meeting the essential requirements? sustainability, serviceability, durability? is yet indispensable. The book presents innovative optimization aided design methods for concrete structures. Mathematical optimization is applied to practical problems of structural concrete at each level: from external, through internal structure identification to cross-section design. It is shown how to design resource-efficient structures following the flux of forces, how to optimally adapt reinforcement layouts to the internal force flow, and how to efficiently cope with demanding cross-sectional design tasks such as biaxial bending. The optimization aided design methods are discussed in detail and described vividly. They are independent of standards, concrete material (normal to ultra-high performance) and reinforcement type (steel fibers to carbon bars), thus universally applicable. The book illustrates the different approaches with numerous figures and calculation examples. Existing applications in structural engineering are presented to demonstrate the potential of optimization aided design concepts, including ultra-lightweight hybrid beams, thin concrete solar collectors, and improved reinforcement layouts for tunnel lining segments.
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https://onlinelibrary.wiley.com/doi/book/10.1002/9783433610725
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