Banerjee Dilip K
National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.
J Res Natl Inst Stand Technol. 2021 Oct 22;126:126030. doi: 10.6028/jres.126.030. eCollection 2021.
Structural design for fire is conceptually similar to structural design conducted under ambient temperature conditions. Such design requires an establishment of clear objectives and determination of the severity of the design fire. In the commonly used prescriptive design method for fire, fire resistance (expressed in hours) is the primary qualification metric. This is an artifact of the standard fire tests that are used to determine this quantity. When conducting a performance-based approach for structural design for fire, it is important to determine structural member temperatures accurately when the members are exposed to a real fire. In order to evaluate the fire resistance of structural members such as structural steels and concrete, both the temporal and spatial variation of temperatures must be accurately determined. The transient temperature profiles in structural members during exposure to a fire can be determined from a heat transfer analysis. There are several models/approaches for analyzing heat transfer that have been used to determine the transient structural temperatures during a fire event. These range from simple models to advanced models involving three-dimensional heat transfer analysis employing finite element or finite difference techniques. This document provides a brief summary of some of the common simple and advanced approaches that have been used for conducting heat transfer analysis of both steel and concrete members when exposed to fire.
火灾结构设计在概念上类似于在常温条件下进行的结构设计。这种设计需要明确目标并确定设计火灾的严重程度。在常用的火灾规定性设计方法中,耐火性(以小时表示)是主要的合格指标。这是用于确定该数量的标准火灾试验的产物。在采用基于性能的火灾结构设计方法时,当结构构件暴露于实际火灾中时,准确确定其温度非常重要。为了评估结构钢和混凝土等结构构件的耐火性,必须准确确定温度的时空变化。火灾期间结构构件中的瞬态温度分布可通过传热分析确定。有几种用于分析传热的模型/方法已被用于确定火灾事件期间的瞬态结构温度。这些模型从简单模型到涉及采用有限元或有限差分技术的三维传热分析的高级模型不等。本文档简要总结了一些在钢构件和混凝土构件暴露于火灾时用于进行传热分析的常见简单和高级方法。