Probability Based Structural Fire Load

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Probability-based Structural Fire Load

Author : Leo Razdolsky
Publisher : Unknown
Page : 128 pages
File Size : 55,5 Mb
Release : 2014
Category : Building, Fireproof
ISBN : 1523113421

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Probability-based Structural Fire Load by Leo Razdolsky Pdf

"In the structural design of airframes and buildings, probability-based procedures are used to mitigate the risk of failure as well as produce cost-effective designs. This book introduces the subject of probabilistic analysis to structural and fire protection engineers and can also be used as a reference to guide those applying this technology. In addition to providing an understanding of how fire affects structures and how to optimize the performance of structural framing systems, Probability-Based Structural Fire Load provides guidance for design professionals and is a resource for educators. The goal of this book is to bridge the gap between prescriptive and probability-based performance design methods and to simplify very complex and comprehensive computer analyses to the point that stochastic structural fire loads have a simple, approximate analytical expression that can be used in structural analysis and design on a day-to-day basis. Numerous practical examples are presented in step-by-step computational form"--

Probability-Based Structural Fire Load

Author : Leo Razdolsky
Publisher : Cambridge University Press
Page : 353 pages
File Size : 55,5 Mb
Release : 2014-08-25
Category : Mathematics
ISBN : 9781107038745

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Probability-Based Structural Fire Load by Leo Razdolsky Pdf

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

Probability Based High Temperature Engineering

Author : Leo Razdolsky
Publisher : Springer
Page : 656 pages
File Size : 43,9 Mb
Release : 2016-08-18
Category : Science
ISBN : 9783319419091

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Probability Based High Temperature Engineering by Leo Razdolsky Pdf

This volume on structural fire resistance is for aerospace, structural, and fire prevention engineers; architects, and educators. It bridges the gap between prescriptive- and performance-based methods and simplifies very complex and comprehensive computer analyses to the point that the structural fire resistance and high temperature creep deformations will have a simple, approximate analytical expression that can be used in structural analysis and design. The book emphasizes methods of the theory of engineering creep (stress-strain diagrams) and mathematical operations quite distinct from those of solid mechanics absent high-temperature creep deformations, in particular the classical theory of elasticity and structural engineering. Dr. Razdolsky’s previous books focused on methods of computing the ultimate structural design load to the different fire scenarios. The current work is devoted to the computing of the estimated ultimate resistance of the structure taking into account the effect of high temperature creep deformations. An essential resource for aerospace structural engineers who wish to improve their understanding of structure exposed to flare up temperatures and severe fires, the book also serves as a textbook for introductory courses in fire safety in civil or structural engineering programs, vital reading for the PhD students in aerospace fire protection and structural engineering, and a case study of a number of high-profile fires (the World Trade Center, Broadgate Phase 8, One Meridian Plaza; Mandarin Towers). Probability Based High Temperature Engineering: Creep and Structural Fire Resistance successfully bridges the information gap between aerospace, structural, and engineers; building inspectors, architects, and code officials.

Phenomenological Creep Models of Composites and Nanomaterials

Author : Leo Razdolsky
Publisher : CRC Press
Page : 402 pages
File Size : 41,6 Mb
Release : 2019-01-02
Category : Science
ISBN : 9781351378703

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Phenomenological Creep Models of Composites and Nanomaterials by Leo Razdolsky Pdf

The use of new engineering materials in the aerospace and space industry is usually governed by the need for enhancing the bearing capacity of structural elements and systems, improving the performance of specific applications, reducing structural weight and improving its cost-effectiveness. Crystalline composites and nanomaterials are used to design lightweight structural elements because such materials provide stiffness, strength and low density/weight. This book reviews the effect of high temperature creep on structural system response, and provides new phenomenological creep models (deterministic and probabilistic approach) of composites and nanomaterials. Certain criteria have been used in selecting the creep functions in order to describe a wide range of different behavior of materials. The experimental testing and evaluation of time variant creep in composite and nanomaterials is quite complex, expensive and, at times, time consuming. Therefore, the analytical analysis of creep properties and behavior of structural elements made of composite and nanocomposite materials subjected to severe thermal loadings conditions is of great practical importance. Composite elements and heterogeneous materials, from which they are made, make essential changes to the classical scheme for constructing the phenomenological creep model of composite elements, because it reflects the specificity of the composite material and manifests itself in the choice of two basic functions of the creep constitutive equation, namely memory and instantaneous modulus of elasticity functions. As such, the concepts and analytical techniques presented here are important. But the principal objective of this book is to demonstrate how nonlinear viscoelastic engineering creep theory can be incorporated into the general theory of mechanics of materials so that composite components can be designed and analyzed. The results are supported by step-by-step practical structural design examples and will be useful for structural engineers, code developers as well as material science researchers and university faculty. The phenomenological creep models presented in this book provide a usable engineering approximation for many applications in composite engineering.

International Handbook of Structural Fire Engineering

Author : Kevin LaMalva,Danny Hopkin
Publisher : Springer Nature
Page : 530 pages
File Size : 51,6 Mb
Release : 2021-10-12
Category : Technology & Engineering
ISBN : 9783030771232

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International Handbook of Structural Fire Engineering by Kevin LaMalva,Danny Hopkin Pdf

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 Fire Loads: Theory and Principles

Author : Leo Razdolsky
Publisher : McGraw Hill Professional
Page : 465 pages
File Size : 55,8 Mb
Release : 2012-06-04
Category : Architecture
ISBN : 9780071789745

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Structural Fire Loads: Theory and Principles by Leo Razdolsky Pdf

Tested techniques for designing fire-resistant structures Structural Fire Loads bridges the gap between prescriptive and performance-based methods for the design of fire-resistant buildings. The book streamlines complex computer analyses so that an approximate analytical expression can be easily used in structural fire load analysis and design. Simplified versions of energy, mass, and momentum equations are provided in dimensionless form with their solutions in tabular form. Step-by-step examples using standard structural systems, such as beams, trusses, frames, and arches, are also presented in this practical guide. Using the proven methods in this book, all types of fires can be addressed in the design process. Coverage includes: Overview of current practice Structural fire load and computer models Differential equations and assumptions Simplifications of differential equations Fire load and severity of fires Structural analysis and design

Advances in Engineering Materials, Structures and Systems: Innovations, Mechanics and Applications

Author : Alphose Zingoni
Publisher : CRC Press
Page : 882 pages
File Size : 48,6 Mb
Release : 2019-08-21
Category : Technology & Engineering
ISBN : 9780429761171

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Advances in Engineering Materials, Structures and Systems: Innovations, Mechanics and Applications by Alphose Zingoni Pdf

Advances in Engineering Materials, Structures and Systems: Innovations, Mechanics and Applications comprises 411 papers that were presented at SEMC 2019, the Seventh International Conference on Structural Engineering, Mechanics and Computation, held in Cape Town, South Africa, from 2 to 4 September 2019. The subject matter reflects the broad scope of SEMC conferences, and covers a wide variety of engineering materials (both traditional and innovative) and many types of structures. The many topics featured in these Proceedings can be classified into six broad categories that deal with: (i) the mechanics of materials and fluids (elasticity, plasticity, flow through porous media, fluid dynamics, fracture, fatigue, damage, delamination, corrosion, bond, creep, shrinkage, etc); (ii) the mechanics of structures and systems (structural dynamics, vibration, seismic response, soil-structure interaction, fluid-structure interaction, response to blast and impact, response to fire, structural stability, buckling, collapse behaviour); (iii) the numerical modelling and experimental testing of materials and structures (numerical methods, simulation techniques, multi-scale modelling, computational modelling, laboratory testing, field testing, experimental measurements); (iv) innovations and special structures (nanostructures, adaptive structures, smart structures, composite structures, bio-inspired structures, shell structures, membranes, space structures, lightweight structures, long-span structures, tall buildings, wind turbines, etc); (v) design in traditional engineering materials (steel, concrete, steel-concrete composite, aluminium, masonry, timber, glass); (vi) the process of structural engineering (conceptualisation, planning, analysis, design, optimization, construction, assembly, manufacture, testing, maintenance, monitoring, assessment, repair, strengthening, retrofitting, decommissioning). The SEMC 2019 Proceedings will be of interest to civil, structural, mechanical, marine and aerospace engineers. Researchers, developers, practitioners and academics in these disciplines will find them useful. Two versions of the papers are available. Short versions, intended to be concise but self-contained summaries of the full papers, are in this printed book. The full versions of the papers are in the e-book.

Life Cycle Analysis and Assessment in Civil Engineering: Towards an Integrated Vision

Author : Robby Caspeele,Luc Taerwe,Dan Frangopol
Publisher : CRC Press
Page : 3160 pages
File Size : 53,8 Mb
Release : 2018-10-31
Category : Technology & Engineering
ISBN : 9781351857574

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Life Cycle Analysis and Assessment in Civil Engineering: Towards an Integrated Vision by Robby Caspeele,Luc Taerwe,Dan Frangopol Pdf

This volume contains the papers presented at IALCCE2018, the Sixth International Symposium on Life-Cycle Civil Engineering (IALCCE2018), held in Ghent, Belgium, October 28-31, 2018. It consists of a book of extended abstracts and a USB device with full papers including the Fazlur R. Khan lecture, 8 keynote lectures, and 390 technical papers from all over the world. Contributions relate to design, inspection, assessment, maintenance or optimization in the framework of life-cycle analysis of civil engineering structures and infrastructure systems. Life-cycle aspects that are developed and discussed range from structural safety and durability to sustainability, serviceability, robustness and resilience. Applications relate to buildings, bridges and viaducts, highways and runways, tunnels and underground structures, off-shore and marine structures, dams and hydraulic structures, prefabricated design, infrastructure systems, etc. During the IALCCE2018 conference a particular focus is put on the cross-fertilization between different sub-areas of expertise and the development of an overall vision for life-cycle analysis in civil engineering. The aim of the editors is to provide a valuable source of cutting edge information for anyone interested in life-cycle analysis and assessment in civil engineering, including researchers, practising engineers, consultants, contractors, decision makers and representatives from local authorities.

Concrete for Extreme Conditions

Author : Ravindra K. Dhir,Michael John McCarthy,Moray D. Newlands
Publisher : Thomas Telford
Page : 904 pages
File Size : 46,8 Mb
Release : 2002
Category : Concrete
ISBN : 0727731785

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Concrete for Extreme Conditions by Ravindra K. Dhir,Michael John McCarthy,Moray D. Newlands Pdf

Structural and System Reliability

Author : Armen Der Kiureghian
Publisher : Cambridge University Press
Page : 611 pages
File Size : 43,5 Mb
Release : 2022-01-13
Category : Science
ISBN : 9781108834148

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Structural and System Reliability by Armen Der Kiureghian Pdf

Offers a modern, rigorous and comprehensive treatment of the subject using numerous well-designed examples and end-of-chapter problems.

IABSE Surveys

Author : Anonim
Publisher : Unknown
Page : 414 pages
File Size : 40,5 Mb
Release : 1979
Category : Structural engineering
ISBN : UCAL:B3530729

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IABSE Surveys by Anonim Pdf

Fire and Buildings

Author : T. T. Lie
Publisher : Unknown
Page : 294 pages
File Size : 51,5 Mb
Release : 1972
Category : Technology & Engineering
ISBN : UOM:39015013191146

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Fire and Buildings by T. T. Lie Pdf

Structural Design for Fire Safety

Author : Andrew H. Buchanan,Anthony Kwabena Abu
Publisher : John Wiley & Sons
Page : 437 pages
File Size : 41,5 Mb
Release : 2017-01-30
Category : Technology & Engineering
ISBN : 9780470972892

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Structural Design for Fire Safety by Andrew H. Buchanan,Anthony Kwabena Abu Pdf

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.