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Structural Analysis and Design to Prevent Disproportionate Collapse - Feng Fu

Structural Analysis and Design to Prevent Disproportionate Collapse

(Autor)

Buch | Hardcover
202 Seiten
2016
Crc Press Inc (Verlag)
978-1-4987-0679-7 (ISBN)
CHF 235,65 inkl. MwSt
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This book features a detailed introduction to progressive collapse and the use of FE programs such as ABAQUS in modeling. Case studies based on various types of structures such as multi-story buildings, long-span space structures, and bridges demonstrate failure mechanisms and effective mitigation methods in practice.
Hard Guidance on Preventing Disproportionate Collapse

Disproportionate collapse is a pressing issue in current design practice. Numerous causes are possible – especially forms of extreme loading, such as blast, fire, earthquake, or vehicle collisions. But it is the mechanism and its prevention which are of especial interest and concern.

After the World Trade Center collapse in 2001, interest was sparked, and it is now imperative for a design engineer to have sufficient knowledge on both the analysis and design against disproportionate collapse. Detailed structural design guidance for preventing this has been developed in Europe and the US – such as BS5950 in the UK, and guidance from the Department of Defense and the General Services Administration in the US. However, Structural Analysis and Design to Prevent Disproportionate Collapse is the first systematic text in the market to help design engineers or structural engineering students to properly understand this guidance.






Covers the design and analysis of a structure to prevent disproportionate collapse
Provides an understanding of disproportionate collapse problems for different structures under different loads
Contains detailed knowledge on the design and progressive collapse analysis of complex structures




Incorporates ABAQUS®, ETABS, SAP2000, and Highlights 3D Modeling Techniques

As progressive collapse analysis is a distinctive and complicated procedure, it normally requires an ability to use a modern commercial finite element package, and Structural Analysis and Design to Prevent Disproportionate Collapse features a detailed introduction to the use of FE programs such as ABAQUS® in progressive collapse analysis. In addition, case studies are performed using 3D FE models based on various types of structures such as multi-storey buildings, long-span space structures, and bridges. These models replicate real collapse incidents and prestigious construction projects, such as progressive collapse analysis of the Twin Towers, structural fire analysis of World Trade Center 7, blast analysis of the Murrah Federal Building and progressive collapse analysis of the Millau Viaduct, which help designers to fully understand the failure mechanisms and effective mitigation methods in practice.

Dr. Feng Fu is a chartered structural engineer, member of the Institution of Structural Engineers, the Institution of Civil Engineers, and the American Society of Structural Engineers. He is a lecturer in structural engineering at City, University of London. He has worked for several international consultancy companies including WSP Group and Waterman Group. He is a member of the Disproportionate Collapse Mitigation of Building Structures Standards and Blast Protection of Buildings Standards committees of the American Society of Civil Engineers. He is also on the editorial boards of Proceedings of the Institution of Civil Engineers -- Structures and Buildings and Advances in Computational Design.

Introduction. Progressive Collapse Design and Analysis of Multistorey Buildings. Progressive Collapse Design and Analysis of Space Structures. Progressive Collapse Design and Analysis of Bridge Structures. Fire-Induced Building Collapse. Design and Analysis of Buildings under Blast Loading. Conclusion.

Erscheinungsdatum
Zusatzinfo 9 Tables, black and white; 120 Illustrations, black and white
Verlagsort Bosa Roca
Sprache englisch
Maße 156 x 234 mm
Gewicht 544 g
Themenwelt Technik Bauwesen
Technik Bergbau
ISBN-10 1-4987-0679-7 / 1498706797
ISBN-13 978-1-4987-0679-7 / 9781498706797
Zustand Neuware
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