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Design model for the verification of the separating function of light timber frame assemblies

机译:验证轻木框架组件分离功能的设计模型

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In order to limit fire spread by providing adequate fire compartmentation, elements forming the boundaries of fire compartments are designed and constructed in such a way that they maintain their separating function during the required fire exposure (insulation and integrity criteria). While fire tests are still widely used for the verification of the separating function of light timber frame assemblies, design models are becoming increasingly common. A comprehensive research project on the separating function of light timber frame wall and floor assemblies with cladding made of gypsum plasterboards and wood-based panels was carried out at ETH Zurich in collaboration with the Swiss Laboratories for Materials Testing and Research (Empa). The objective of the research project was the development of an improved design model for the verification of the separating function of light timber frame wall and floor assemblies. A large number of small-scale fire tests permitted the analysis of different parameters on the thermal behaviour of protective cladding made of gypsum plasterboards and wood-based panels. The results of the fire tests allowed the verification and calibration of thermal properties used for thermal finite element (FE) analysis. Based on an extensive FE parametric study, the coefficients of the design model for the verification of the separating function of light timber frame wall and floor assemblies were calculated. The design model was verified by means of full-scale fire tests. The paper first describes the basic structure of the design model for the verification of the separating function of light timber frame wall and floor assemblies. Then, the main results of experimental and numerical analyses are presented. The results permitted the calculation of the coefficients of the design model for the verification of the separating function of light timber frame wall and floor assemblies.
机译:为了通过提供足够的防火间隔来限制火势蔓延,设计和构造形成防火间隔边界的元件,使其在所需的火势暴露(绝缘和完整性标准)下保持其分离功能。尽管防火测试仍广泛用于验证轻木框架组件的分离功能,但设计模型正变得越来越普遍。与瑞士材料测试与研究实验室(Empa)合作,在苏黎世联邦理工学院开展了一项综合研究项目,该研究涉及用石膏灰泥板和人造板制成的轻木框架墙和地板组件与覆层的分离功能。该研究项目的目的是开发一种改进的设计模型,以验证轻木框架墙和地板组件的分离功能。大量的小规模火灾测试允许对石膏石膏板和人造板制成的保护性覆盖层的热性能进行不同参数的分析。燃烧测试的结果允许验证和校准用于热有限元(FE)分析的热性能。在广泛的有限元参数研究的基础上,计算了用于验证轻木框架墙和地板组件的分离功能的设计模型的系数。通过全面的防火测试验证了设计模型。本文首先描述了设计模型的基本结构,以验证轻木框架墙和地板组件的分离功能。然后,给出了实验和数值分析的主要结果。结果允许计算设计模型的系数,以验证轻木框架墙和地板组件的分离功能。

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