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SomnathGhosh,ArundebGupta

Design of Wind and Earthquake Resistant Reinforced Concrete Buildings

Design of Wind and Earthquake Resistant Reinforced Concrete Buildings

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Design of Wind and Earthquake Resistant Reinforced Concrete Buildings discusses wind and seismic design issues of RCC buildings, providing design examples based on IS codes. It covers guidelines for evaluating wind-induced motions and methodologies for structures to deform well beyond their elastic limits. Comparative discussion includes typical design examples using recent British, Euro, and American codes. The book is aimed at researchers, professionals, and graduate students in wind and earthquake engineering, design of RCC structures, modeling, and analysis of structures, and civil/infrastructure engineering.

Format: Hardback
Length: 232 pages
Publication date: 17 May 2021
Publisher: Taylor & Francis Ltd


Design of Wind and Earthquake Resistant Reinforced Concrete Buildings is a comprehensive guide that delves into the intricate aspects of wind and seismic design for reinforced concrete (RCC) buildings. Authored by experts in the field, the book offers a concise yet comprehensive overview of the key challenges and recommendations associated with designing RCC structures that can withstand both wind and earthquake loads.

The book begins by providing a brief introduction to the principles of wind and seismic design, emphasizing the importance of considering these factors in the design of RCC buildings. It then discusses the various design issues that arise when designing RCC structures, including structural behavior, material properties, and construction techniques.

To enhance the understanding of these design issues, the book includes real-life examples and case studies that illustrate the practical application of the principles discussed. These examples help readers to see how the design principles can be applied in different scenarios and to understand the trade-offs and considerations involved in the design process.

In addition to discussing the theoretical aspects of wind and seismic design, the book also provides detailed guidelines for evaluating the acceptability of wind-induced motions of tall buildings. It discusses the principles of wind tunnel testing and computational fluid dynamics (CFD) and how these tools can be used to predict the behavior of RCC structures under wind loads.

Furthermore, the book discusses design methodologies for structures to deform well beyond their elastic limits, which is essential under seismic excitation. It covers the principles of plasticity theory, finite element analysis, and seismic design codes, such as the International Building Code (IBC) and the Eurocode. The book provides a comparative discussion of these codes, highlighting their similarities and differences and discussing the implications for design.

The book is designed to cater to a wide range of readers, including researchers, professionals, graduate students in wind and earthquake engineering, design of RCC structures, modeling and analysis of structures, and civil/infrastructure engineering. It offers a comprehensive understanding of the principles, methodologies, and design considerations involved in wind and earthquake resistant design of RCC buildings.

Throughout the book, architectural drawings and structural drawings are included to illustrate the design concepts and principles discussed. These drawings provide a visual representation of the structures and help readers to better understand the design process and the structural behavior of the buildings.

In conclusion, Design of Wind and Earthquake Resistant Reinforced Concrete Buildings is a valuable resource for anyone involved in the design of RCC buildings. It provides a comprehensive and up-to-date understanding of the key design issues, principles, and methodologies associated with wind and seismic design. With its real-life examples, case studies, and detailed guidelines, the book offers practical insights and guidance for designing resilient and sustainable RCC structures. Whether you are a professional engineer, researcher, or student, this book will be an invaluable asset in your pursuit of knowledge and expertise in the field of wind and earthquake engineering.

Weight: 546g
Dimension: 212 x 292 x 21 (mm)
ISBN-13: 9780367537791

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