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Performance-Based Design of Structural Steel for Fire Conditions A Calculation Methodology

Por: Special Design Issue — Fire Protection Committee of the Structural Engineering Institute of ASCE.
Colaborador(es): Parkinson, David L [] | Kodur, Venkatesh [] | Sullivan, Paul D [].
Tipo de material: TextoTextoSeries Editor: Reston, VA American Society of Civil Engineers 2013, c2009Descripción: viii,124 p.Tipo de contenido: Tipo de medio: Tipo de portador: ISBN: 9780784472200.Tema(s): Buildings -- Performance -- Mathematical models | Engineering mathematics -- Formulae | Steel, Structural -- Mathematical models | Building, Fireproof -- Mathematics | Building, Iron and steel -- Mathematics | Structural engineering -- Mathematics | Numerical calculations | Fire resistance | Construction methods | Temperature effects | Structural design | Steel structures | Structural steel | Fires | Suspended structures | North AmericaRecursos en línea: Haga clic para acceso en línea
Contenidos:
Design Manual; Current Approach to Structural Fire Safety; The Performance-Based Design Philosophy; Fire Scenario Development; Fully Developed Fire Modeling; Basic Concepts of Structural Fire Design; Future Work; Review of the Standard Test; Derivation of Room Fuel Load Equation; Fundamental Heat Balance Equations for a Compartment Fire; Calculation of Plenum Temperature for Structural Steel Protected by a Suspended Ceiling; References; Index
Resumen: Prepared by the Fire Protection Committee of the Structural Engineering Institute of ASCE Performance-Based Design of Structural Steel for Fire Conditions presents a new method developed to improve the design of structural steel for fire conditions. New fire building codes have been adopted in North America, and this method simplifies the performance-based design approach. This manual is written only for two-dimensional thermal responses of structural steel to fires. Main topics include mathematical modeling, predicting time-temperature relationships, calculating the critical temperature in structural steel, fire resistance ratings, and maximum temperatures for suspended ceilings. The new method presented in this manual will be invaluable for anyone involved in structural engineering, fire safety, and construction engineering. Owners and managers of buildings will also greatly benefit.
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Design Manual; Current Approach to Structural Fire Safety; The Performance-Based Design Philosophy; Fire Scenario Development; Fully Developed Fire Modeling; Basic Concepts of Structural Fire Design; Future Work; Review of the Standard Test; Derivation of Room Fuel Load Equation; Fundamental Heat Balance Equations for a Compartment Fire; Calculation of Plenum Temperature for Structural Steel Protected by a Suspended Ceiling; References; Index

Prepared by the Fire Protection Committee of the Structural Engineering Institute of ASCE Performance-Based Design of Structural Steel for Fire Conditions presents a new method developed to improve the design of structural steel for fire conditions. New fire building codes have been adopted in North America, and this method simplifies the performance-based design approach. This manual is written only for two-dimensional thermal responses of structural steel to fires. Main topics include mathematical modeling, predicting time-temperature relationships, calculating the critical temperature in structural steel, fire resistance ratings, and maximum temperatures for suspended ceilings. The new method presented in this manual will be invaluable for anyone involved in structural engineering, fire safety, and construction engineering. Owners and managers of buildings will also greatly benefit.

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