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Performance-based design of structural steel for fire conditions : a calculation methodology / / prepared by the Special Design Issues--Fire Protection Committee of the Structural Engineering Institute of the American Society of Civil Engineers ; edited by David L. Parkinson, Venkatesh Kodur, Paul D. Sullivan



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Titolo: Performance-based design of structural steel for fire conditions : a calculation methodology / / prepared by the Special Design Issues--Fire Protection Committee of the Structural Engineering Institute of the American Society of Civil Engineers ; edited by David L. Parkinson, Venkatesh Kodur, Paul D. Sullivan Visualizza cluster
Pubblicazione: Reston, VA, : American Society of Civil Engineers, : Structural Engineering Institute, c2009
Edizione: 1st ed.
Descrizione fisica: viii, 124 p. : ill
Disciplina: 693.8/2
Soggetto topico: Building, Fireproof - Mathematics
Building, Iron and steel - Mathematics
Structural engineering - Mathematics
Steel, Structural - Mathematical models
Buildings - Performance - Mathematical models
Engineering mathematics
Numerical calculations
Altri autori: ParkinsonDavid L  
KodurVenkatesh  
SullivanPaul D (Paul David)  
Note generali: Bibliographic Level Mode of Issuance: Monograph
Nota di bibliografia: Includes bibliographical references (p. 119-122) and index.
Nota di contenuto: Intro -- CONTENTS -- FOREWORD -- 1 DESIGN MANUAL -- 1.1 Selection of Compartments or Areas to Design -- 1.2 Determination of Compartment Fuel Loads -- 1.3 Predicted Compartment Fire Time-Temperature Relationship -- 1.4 Predicted Steel Time-Temperature Relationship -- 1.5 Worked Example -- 2 CURRENT APPROACH TO STRUCTURAL FIRE SAFETY -- 2.1 History of the Standard Test Methods -- 3 THE PERFORMANCE-BASED DESIGN PHILOSOPHY -- 4 FIRE SCENARIO DEVELOPMENT -- 4.1 Compartment Fires -- 4.2 Ventilation-Controlled Vs. Fuel-Controlled Fires -- 4.3 Room Fuel Load -- 5 FULLY DEVELOPED FIRE MODELING -- 5.1 T-Equivalent Concept -- 5.2 Parametric Fire Curves -- 6 BASIC CONCEPTS OF STRUCTURAL FIRE DESIGN -- 6.1 Role of the Structural Engineer Vs. the Fire Protection Engineer -- 6.2 Specific Calculation Requirements -- 6.3 Behavior of Steel under Fire Conditions -- 6.4 Critical Temperatures -- 6.5 Time-Temperature History of Fire-Exposed Members -- 7 FUTURE WORK -- APPENDIX A: REVIEW OF THE STANDARD TEST -- A.1 Influence of Standard Fire Test Time-Temperature Curve on Test Specimen -- A.2 Influence of Loading and Restraint of the Structural Member in the Test Chamber -- A.3 Influence of Material Properties -- A.4 Influence of Furnace Construction -- APPENDIX B: DERIVATION OF ROOM FUEL LOAD EQUATION -- APPENDIX C: FUNDAMENTAL HEAT BALANCE EQUATIONS FOR A COMPARTMENT FIRE -- C.1 Fundamental Heat Balance Equation -- C.2 qR: Rate of Radiative Heat Loss through the Ventilation Opening -- C.3 qW: Rate of Heat Loss through Compartment Boundaries -- C.4 qL: Rate of Convective Heat Loss Out Opening -- C.5 qC: Rate of Combustion Heat Release -- APPENDIX D: CALCULATION OF PLENUM TEMPERATURE FOR STRUCTURAL STEEL PROTECTED BY A SUSPENDED CEILING -- D.1 Calculation of Plenum Temperatures -- REFERENCES -- INDEX -- B -- C -- D -- E -- F -- H -- I -- L -- M -- N -- O -- P -- R.
S -- T -- V.
Sommario/riassunto: MOP 114 presents a new method developed to improve the design of structural steel for fire conditions.
Titolo autorizzato: Performance-based design of structural steel for fire conditions  Visualizza cluster
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9911004818303321
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Serie: ASCE manuals and reports on engineering practice ; ; no. 114.