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Assessment of the Dynamic Temperature Profile in Fire Loaded Sandwich Structures Based on Wood in Comparison with Conventional Structural Systems

机译:与常规结构系统相比,基于木材的火灾装载夹层结构中动态温度曲线的评估

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摘要

Fire safety is an important feature of healthy internal environment. If a fire breaks out, the interior of fire compartments within the building is exposed to very high temperatures and further phenomena accompanying the burning process. All of them impact the boundaries of the compartment structures, including the structures that are located inside them. Some structures serve the load bearing function hand in hand with fire barriers, some are only fire barriers. As to the dramatic increase of temperature, its impact upon the opposite surface of the fire separating structure should be considered, in particular regarding the behaviour of the load bearing elements and their stability. This is topical at the present day, since the conventional construction materials are seen to give way to wooden sandwich structures that are preferred especially for their thermal insulation properties, low weight, small thickness and speediness of construction. The article uses dynamic simulation to illustrate how these modern structures react to high temperatures within specific time intervals, offering comparisons with traditional brick structures.
机译:消防安全是健康内环境的重要特征。如果火灾突破,建筑物内的火隔室内部暴露于非常高的温度和伴随燃烧过程的进一步现象。所有这些都会影响隔室结构的边界,包括位于它们内部的结构。有些结构用防火障碍携手共进,有些是防火障碍。关于温度的显着增加,应考虑其对火分离结构的相对表面的影响,特别是关于承载元件的行为及其稳定性。这是在当前的局部,因为传统的结构材料被认为使方法能够使木夹层结构尤其是它们的绝热性能,低重量,小的厚度和施工速度。该物品使用动态仿真来说明这些现代结构如何在特定时间间隔内对高温作出反应,提供与传统砖结构的比较。

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