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1. General collapse information 2. Terms of construction and building design 3. Building construction: firefighting problems and structural hazards 4. Masonry wall collapse 5. Collapse dangers of parapet walls 6. Wood floor collapse 7. Sloping peak roof collapse 8. Timber truss roof collapse 9. Flat roof collapse 10. Lightweight steel roof and floor collapse 11. Lightweight wood truss collapse 12. Ceiling collapse 13. Stairway collapse 14. Fire escape dangers 15. Wood-frame building collapse 16. Collapse hazards of buildings under construction 17. Collapse caused by master stream operations 18. Search-and-rescue at a building collapse 19. Safety precautions prior to collapse 20. Why the World Trade Center Towers collapsed 21. High-rise building collapse 22. Post-fire analysis 23. Early floor collapse EPILOGUE: Are architects, engineers, and code-writing officials friends of the firefighters?
The National Fire Protection Association (NFPA) and International Association of Fire Chiefs (IAFC) are pleased to bring you Fundamentals of Technical Rescue. Beginning with an introduction to technical rescue and progressing through discussions of tools and equipment, incident management, and conducting search operations, this text will introduce
What happens when the very ground beneath your feet gives way? In Collapse, Philip Wearne tells the stories behind the worst structural engineering disasters of the last fifty years, and the forensic engineers who investigated their causes. Using expert testimonies from scientific investigators, Wearne studies eleven high-profile cases of catastrophic structural collapse, from The Hyatt Regency Hotel in Kansas City and the Hartford Civic Center in Connecticut, to the Alfred P. Murrah Federal Building in Oklahoma City. Sometimes, if these disasters have a single cause, it is a small flaw that spawns a chain reaction -- for instance, the miniscule flaw in the metal of one eyebar of the Point Pleasant Bridge on the Ohio River. Usually, though, and more alarmingly, the causes are human. Mistakes, misunderstandings, incompetence, greed, and corruption: every facet of human failing is represented in these structural collapses. This makes the investigation of these failures -- by agencies like the Failure Analysis Associates, who can have close to two thousand investigations ongoing at any one time -- dirty and dangerous business. Wearne's case study takes us deep inside the ever-growing industry of forensic engineering, revealing a group of professionals dedicated to determining the cause of a collapse at any cost, while learning and applying valuable lessons from each failure. Provocative and well-written, Collapse is essential for deepening our understanding of -- and readiness for -- catastrophe.
Hard Guidance on Preventing Disproportionate CollapseDisproportionate 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 Wor
Safety, Reliability, Risk and Life-Cycle Performance of Structures and Infrastructures contains the plenary lectures and papers presented at the 11th International Conference on STRUCTURAL SAFETY AND RELIABILITY (ICOSSAR2013, New York, NY, USA, 16-20 June 2013), and covers major aspects of safety, reliability, risk and life-cycle performance of str
Following the great progress made in computing technology, both in computer and programming technology, computation has become one of the most powerful tools for researchers and practicing engineers. It has led to tremendous achievements in computer-based structural engineering and there is evidence that current devel- ments will even accelerate in the near future. To acknowledge this trend, Tongji University, Vienna University of Technology, and Chinese Academy of Engine- ing, co-organized the International Symposium on Computational Structural En- neering 2009 in Shanghai (CSE’09). CSE’09 aimed at providing a forum for presentation and discussion of sta- of-the-art development in scientific computing applied to engineering sciences. Emphasis was given to basic methodologies, scientific development and engine- ing applications. Therefore, it became a central academic activity of the Inter- tional Association for Computational Mechanics (IACM), the European Com- nity on Computational Methods in Applied Sciences (ECCOMAS), The Chinese Society of Theoretical and Applied Mechanic, the China Civil Engineering So- ety, and the Architectural Society of China. A total of 10 invited papers, and around 140 contributed papers were p- sented in the proceedings of the symposium. Contributors of papers came from 20 countries around the world and covered a wide spectrum related to the compu- tional structural engineering.
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