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Cable Stayed Bridges : From Concept to Performance-based Design

By: (Author) Ayman Shama

Manufacture on Demand

Ksh 27,900.00

Format: Hardback or Cased Book

ISBN-10: 1138557897

ISBN-13: 9781138557895

Publisher: Taylor & Francis Ltd

Imprint: CRC Press

Country of Manufacture: GB

Country of Publication: GB

Publication Date: May 15th, 2025

Print length: 479 Pages

Weight: 1,060 grams

Product Classification: Civil engineering, surveying & building

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The evolution of cable-stayed bridge design is described in this book with an emphasis on the significant advancements over the last two decades.

In the past, cable-stayed bridges were seen as an alternative that fills the gap between long span bridges and suspension bridges. During the 1980s, emergence of several types of construction of cable-stayed bridges such as steel, segmental concrete, composite steel and concrete superstructures emerged in different countries. The great evolution in computational methods; materials; and methods of construction has contributed to the tremendous development in the state of the art of cable-stayed bridges in the past two decades. With spans that exceed one thousand meters, cable-stayed bridges are now becoming a substitute of suspension bridges even at this length. This book outlines the development in design of cable-stayed bridges. Rigorous methods of analysis are presented. Simplified methods that lead to preliminary estimation of forces in major members for design are discussed. The book first reviews the evolution of this type of bridges with focus on the vast development during the past twenty years. The book then discusses the basic principles of cable-stayed bridges related to aspects of analysis, design, construction and maintenance. Specific issues such as aerodynamic stability of the bridges and different methods of testing and analysis required for this purpose are explained. Cable vibration problem is summarized and methods of its control are outlined. Special attention to the performance-based design method is given and one chapter is devoted towards explanation of the merits of this trend in design. Application of the method to the seismic design of cable-stayed bridges is also covered.


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