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首页> 外文期刊>Journal of structural fire engineering >Experimental and Numerical Investigation of Localised Fire on Glazing Facades Having Different Orientations
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Experimental and Numerical Investigation of Localised Fire on Glazing Facades Having Different Orientations

机译:不同方向玻璃幕墙局部起火的实验与数值研究

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摘要

Breakage and fallout of glazing systems create openings in an enclosure that affect the fire growth and the development of post flashover flames emerging outside of the openings. The behaviour of glazing is the result of its thermally induced stress response to the heat fluxes from the fire in an enclosure. In recent times building facade designs have evolved and now incorporate many different shapes, orientations and materials. The conventional single and double glazing panels have been surpassed by composite type glazing systems including glazing and transparent resins. This paper presents experimental testing of these comp osite glazing panels having different orientations subjected to localized fires, which have the same fire load. The experimental findings of interest include the varying first crack times for both scenarios as well as the variable final crack patterns on the glazing panels. The effect of localized fire on the materials tested as seen in the final char patterns on both glazing systems is also note worthy. The paper also includes details of three-dimensional finite element modeling completed for the prediction of response of the glazing panels at different orientations to the elevated temperatures of the localised fire scenario as tested in the laboratory. This finite element analysis allows for an assessment of glazing thermal stresses at various times throughout each test.
机译:玻璃系统的破裂和脱落会在外壳中形成开口,从而影响火势的增长以及开口外部出现的后闪络火焰的发展。玻璃的行为是其对外壳中火的热通量的热感应应力响应的结果。近年来,建筑立面设计不断发展,现在融合了许多不同的形状,方向和材料。包括玻璃窗和透明树脂的复合型玻璃窗系统已经超越了传统的单层和双层玻璃板。本文介绍了这些复合玻璃板的实验测试,这些玻璃板具有不同的方向,它们承受着局部着火,并且着火负荷相同。有趣的实验发现包括两种情况下不同的首次开裂时间以及玻璃面板上可变的最终开裂模式。值得注意的是,在两个玻璃系统的最终烧焦图案中都可以看到局部燃烧对材料的影响。该文件还包括完成的三维有限元建模的详细信息,以预测玻璃板在不同方向上对实验室中测试的局部火灾场景的高温的响应。这种有限元分析可以评估整个测试过程中不同时间的玻璃热应力。

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