FIRE RESISTANCE REQUIREMENTS FOR BUILDINGS
S. Vasantha Kumar
Abstract
S. Vasantha Kumar
Abstract
One aspect of building regulation, which is directly concerned with the design of structures, is the fire resistance of the structure. This review outlined some of the major developments that have occurred in structural fire engineering design during recent years. The general principles are discussed together with the various approaches that can be adopted by an architect or engineer to design a structure capable of withstanding the attack of fire without collapsing using scientific concepts as a basis for determining the fire resistance and protection requirements. The fire resistance of various structural members can be determined by testing or, in many cases by calculation, which is far expensive and time consuming. The development of realistic methods for calculating fire resistance in an actual fire enables the building designer to adopt a rational approach to fire safety in building design. The most notable factors considered in this study are fire load intensity and size and shape of the openings. This paper summarizes some of the fire loads data conducted in office and residential buildings in Kanpur, India. The structural interaction and response in an elevated temperature environment are explained. INTRODUCTION FIRE RESISTANCE FIRE LOAD INTENSITY OPENING FACTOR TEMPERATURE EFFECT ON CONSTRUCTION MATERIALS CONCLUSIONS REFERENCES
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
One aspect of building regulation, which is directly concerned with the design of structures, is the fire resistance of the structure. This review outlined some of the major developments that have occurred in structural fire engineering design during recent years. The general principles are discussed together with the various approaches that can be adopted by an architect or engineer to design a structure capable of withstanding the attack of fire without collapsing using scientific concepts as a basis for determining the fire resistance and protection requirements. The fire resistance of various structural members can be determined by testing or, in many cases by calculation, which is far expensive and time consuming. The development of realistic methods for calculating fire resistance in an actual fire enables the building designer to adopt a rational approach to fire safety in building design. The most notable factors considered in this study are fire load intensity and size and shape of the openings. This paper summarizes some of the fire loads data conducted in office and residential buildings in Kanpur, India. The structural interaction and response in an elevated temperature environment are explained. INTRODUCTION FIRE RESISTANCE FIRE LOAD INTENSITY OPENING FACTOR TEMPERATURE EFFECT ON CONSTRUCTION MATERIALS CONCLUSIONS REFERENCES
Key concepts: Fire resistance, Fire protection engineering, Architectural engineering, Fire protection, Fire safety, Active fire protection, Engineering, Building design