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Heat Transfer Principles in Thermal Calculation of Structures in Fire

机译:火灾结构热计算中的传热原理

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摘要

Structural fire engineering (SFE) is a relatively new interdisciplinary subject, which requires a comprehensive knowledge of heat transfer, fire dynamics and structural analysis. It is predominantly the community of structural engineers who currently carry out most of the structural fire engineering research and design work. The structural engineering curriculum in universities and colleges do not usually include courses in heat transfer and fire dynamics. In some institutions of higher education, there are graduate courses for fire resistant design which focus on the design approaches in codes. As a result, structural engineers who are responsible for structural fire safety and are competent to do their jobs by following the rules specified in prescriptive codes may find it difficult to move toward performance-based fire safety design which requires a deep understanding of both fire and heat. Fire safety engineers, on the other hand, are usually focused on fire development and smoke control, and may not be familiar with the heat transfer principles used in structural fire analysis, or structural failure analysis. This paper discusses the fundamental heat transfer principles in thermal calculation of structures in fire, which might serve as an educational guide for students, engineers and researchers. Insights on problems which are commonly ignored in performance based fire safety design are also presented.
机译:结构消防工程(SFE)是一门相对较新的跨学科学科,需要对传热,火灾动力学和结构分析有全面的了解。目前主要是结构工程师社区,他们从事大部分结构消防工程的研究和设计工作。大学和学院的结构工程课程通常不包括传热和火灾动力学课程。在某些高等教育机构中,有一些防火设计的研究生课程,重点是规范中的设计方法。结果,负责结构防火安全并有能力按照规定性规范进行工作的结构工程师可能会发现,很难转向基于性能的防火设计,这需要对防火和热。另一方面,消防安全工程师通常专注于火灾发展和烟雾控制,可能不熟悉结构火灾分析或结构失效分析中使用的传热原理。本文讨论了火灾结构热计算中的基本传热原理,可为学生,工程师和研究人员提供教育指导。还介绍了对基于性能的消防安全设计中通常被忽略的问题的见解。

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