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Progressive Collapse Analysis of Concrete-filled Steel Tubular Structures: Woodhead Publishing Series in Civil and Structural Engineering

Autor Man Xu, Shan Gao, Jing-xuan Wang
en Limba Engleză Paperback – 24 sep 2024
Since the notorious terrorist attack of the World Trade Center in 2001, researchers and engineers have been forced to review the existing research works and standards in resisting the progressive collapse of structures. From then on, the design of structure against progressive collapse has tended toward quantitative design, rather than qualitative design. The collapse of the COVID-19 epidemic isolation hotel in Quanzhou, China, in 2020 and the vertical collapse of a 12-story apartment in Florida, United States, in 2021 have aroused an upsurge of the research on progressive collapse. More experimental and theoretical works have been focused on this area. This book addresses this issue and provides a valuable reference for the progressive collapse analysis and design of building structures.


  • Reviews latest references systematically in terms of experiments, simulation, and theory
  • Introduces different test equipment used in the tests of progressive collapse and also modeling techniques used in the numerical studies of progressive collapse
  • Includes performance prediction theories used in the analysis of progressive collapse
  • Comprises considerable information on the tests and simulation and theoretical studies collected from the authors’ research in the last 10 years
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Specificații

ISBN-13: 9780443217227
ISBN-10: 044321722X
Pagini: 344
Dimensiuni: 152 x 229 mm
Greutate: 1 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering


Cuprins

1. Introduction 2. Anti-collapse performance of concrete-filled steel tubular joints with long bolts 3. Anti-collapse performance of novel concrete-filled steel tubular joints 4. Anti-collapse performance of concrete-filled steel tubular steel frame 5. Anti-collapse performance of concrete-filled steel tubular composite frame 6. Dynamic performance of concrete-filled steel tubular frame under column loss