Best Practice Guidelines for Structural Fire Resistance Design of Concrete and Steel Buildings

Best Practice Guidelines for Structural Fire Resistance Design of Concrete and Steel Buildings
Author: U.s. Department of Commerce
Publsiher: CreateSpace
Total Pages: 216
Release: 2014-06-12
Genre: Science
ISBN: 150017758X

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This best practices document is prepared as part of the response to the recommendations from the October 2003 NIST-SFPE Workshop for Development of a National R&D Roadmap for Structural Fire Safety Design and Retrofit of Structures. The workshop was jointly organized by the Society of Fire Protections Engineers (SFPE) and the National Institute of Standards and Technology (NIST) with guidance from an industry steering team comprising of representatives of the American Institute of Steel Construction (AISC), the American Society of Civil Engineers (ASCE), Portland Cement Association (PCA), Underwriters Laboratories (UL), Arup Fire, and National Fire Protection Association (NFPA). The document aims to integrate information on current “best practices” in fire resistance engineering in the United States and overseas with current best knowledge in fire risk assessment and characterization, material properties and responses at high temperatures, and thermal and structural response calculation methods into a single source document, and to provide engineers and code enforcement officials with a technical resource for use in their approach to fire resistance design and evaluation of concrete and steel structures.

Best practice guidelines for structural fire resistance design of concrete and steel buildings

Best practice guidelines for structural fire resistance design of concrete and steel buildings
Author: Anonim
Publsiher: Unknown
Total Pages: 199
Release: 2009
Genre: Building materials
ISBN: OCLC:1037511344

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International Handbook of Structural Fire Engineering

International Handbook of Structural Fire Engineering
Author: Kevin LaMalva,Danny Hopkin
Publsiher: Springer Nature
Total Pages: 530
Release: 2021-10-12
Genre: Technology & Engineering
ISBN: 9783030771232

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This Handbook is focused on structural resilience in the event of fire. It serves as a single point of reference for practicing structural and fire protection engineers on the topic of structural fire safety. It is also stands as a key point of reference for university students engaged with structural fire engineering.

Structural Design for Fire Safety

Structural Design for Fire Safety
Author: Andrew H. Buchanan,Anthony Kwabena Abu
Publsiher: John Wiley & Sons
Total Pages: 437
Release: 2017-01-30
Genre: Technology & Engineering
ISBN: 9780470972892

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Structural Design for Fire Safety, 2nd edition Andrew H. Buchanan, University of Canterbury, New Zealand Anthony K. Abu, University of Canterbury, New Zealand A practical and informative guide to structural fire engineering This book presents a comprehensive overview of structural fire engineering. An update on the first edition, the book describes new developments in the past ten years, including advanced calculation methods and computer programs. Further additions include: calculation methods for membrane action in floor slabs exposed to fires; a chapter on composite steel-concrete construction; and case studies of structural collapses. The book begins with an introduction to fire safety in buildings, from fire growth and development to the devastating effects of severe fires on large building structures. Methods of calculating fire severity and fire resistance are then described in detail, together with both simple and advanced methods for assessing and designing for structural fire safety in buildings constructed from structural steel, reinforced concrete, or structural timber. Structural Design for Fire Safety, 2nd edition bridges the information gap between fire safety engineers, structural engineers and building officials, and it will be useful for many others including architects, code writers, building designers, and firefighters. Key features: • Updated references to current research, as well as new end-of-chapter questions and worked examples. •Authors experienced in teaching, researching, and applying structural fire engineering in real buildings. • A focus on basic principles rather than specific building code requirements, for an international audience. An essential guide for structural engineers who wish to improve their understanding of buildings exposed to severe fires and an ideal textbook for introductory or advanced courses in structural fire engineering.

Response of Structures Under Extreme Loading

Response of Structures Under Extreme Loading
Author: Venkatesh K.R. Kodur,Nemkumar Banthia
Publsiher: DEStech Publications, Inc
Total Pages: 1014
Release: 2015-07-01
Genre: Technology & Engineering
ISBN: 9781605952277

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Original research on performance of materials under a wide variety of blasts, impacts, severe loading and fireCritical information for protecting buildings and civil infrastructure against human attack, deterioration and natural disastersTest and design data for new types of concrete, steel and FRP materials This technical book is devoted to the empirical and theoretical analysis of how structures and the materials constituting them perform under the extreme conditions of explosions, fire, and impact. Each of the 119 fully refereed presentations is published here for the first time and was selected because of its original contribution to the science and engineering of how materials, bridges, buildings, tunnels and their components, such as beams and pre-stressed parts, respond to potentially destructive forces. Emphasis is placed on translating empirical data to design recommendations for strengthening structures, including strategies for fire and earthquake protection as well as blast mitigation. Technical details are provided on the development and behavior of new resistant materials, including reinforcements, especially for concrete, steel and their composites.

Probability Based Structural Fire Load

Probability Based Structural Fire Load
Author: Leo Razdolsky
Publsiher: Cambridge University Press
Total Pages: 353
Release: 2014-08-25
Genre: Mathematics
ISBN: 9781107038745

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This book introduces the subject of probabilistic analysis to engineers and can be used as a reference in applying this technology.

High Rise Buildings

High Rise Buildings
Author: Jerry Tracy,Jack Murphy,James Murtagh
Publsiher: Fire Engineering Books
Total Pages: 953
Release: 2023-05-04
Genre: Technology & Engineering
ISBN: 9781593705800

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Authors Jerry Tracy, Jack J. Murphy and James J. Murtagh invite fire chiefs, fire officers, firefighters, fire protection engineers, building management and the greater fire community to explore High-Rise Buildings: Understanding the Vertical Challenges as a foundation for coordination and control of high-rise building operations. Features: - Learn about cognitive command from many invaluable high-rise fire case histories - Manage and respond to all-hazards events within the high-rise environment for generations to come - A guideline and reference for fire professionals, building owners and system engineers, the building construction community, property managers What others are saying: "High-Rise Buildings: Understanding the Vertical Challenges is literally a "bible" for high-rise buildings, protection from fire, and the challenges they present to firefighters." --Paul Grimwood, Kent (UK) Fire and Rescue Service, Ph.D., Principal, Fire Protection Engineer "High-Rise Buildings: Understanding the Vertical Challenges fills an important void in high-rise firefighting and is an important asset to fire officers." --Glenn P. Corbett, Fire Engineering Magazine, Technical Editor

Designing Steel Structures for Fire Safety

Designing Steel Structures for Fire Safety
Author: Jean Marc Franssen,Venkatesh Kodur,Raul Zaharia
Publsiher: CRC Press
Total Pages: 182
Release: 2009-05-06
Genre: Technology & Engineering
ISBN: 9780203875490

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Structural design in fire conditions is conceptually similar to structural design in normal temperature conditions, but often more difficult because of internal forces induced by thermal expansion, strength reduction due to elevated temperatures, much larger deflections, and numerous other factors. Before making any design decisions it is esse