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Investigation of thermal breakage and heat transfer in single, insulated and laminated glazing under fire conditions

机译:火灾条件下单层,隔热和夹层玻璃的热破坏和传热研究

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摘要

To make constructions more artistic, various new kinds of glazing are increasingly employed in building envelopes. However, when subjected to a fire, these glass façades may easily break and fall out, significantly accelerating the development of enclosure fire. Thus, it is necessary to investigate and compare their different fire performance and breakage mechanisms. In this work, a total of ten tests, including single coated, insulated and laminated glazing, were heated by a 500 × 500 mm2 pool fire. Breakage time, glass surface and air temperature, incident heat flux and crack initiation and propagation were obtained. The critical conditions of three different kinds of glazing were determined. It was established that the insulated and laminated glass can survive longer than the single glass. The air gap and fire side glass pane was found to play a key role for the thermal resistance of ambient side pane in the insulated glazing. Although both panes of the laminated glazing broke, it could be held together by the layer of gel, effectively avoiding the formation of a new vent. Numerical simulations were performed to investigate the heat transfer process through the glazing panels and the temperatures in the glazing were predicted well. Suggestions for glass fire resistance design are proposed.
机译:为了使建筑更具艺术感,在建筑围护结构中越来越多地使用各种新型玻璃。但是,在遭受火灾时,这些玻璃幕墙可能会容易破裂和掉落,从而大大加快了围墙火灾的发展。因此,有必要研究和比较它们的不同防火性能和破坏机理。在这项工作中,由500×500 mm2的池火加热总共进行了十项测试,包括单涂层,隔热和层压玻璃。获得了破裂时间,玻璃表面和空气温度,入射热通量以及裂纹的萌生和扩展。确定了三种不同类型的玻璃的临界条件。已经确定,隔热和夹层玻璃的寿命比单个玻璃更长。发现气隙和火侧玻璃板在隔热玻璃中对于环境侧板的热阻起关键作用。尽管叠层玻璃的两个窗格都破裂了,但可以通过一层凝胶将其固定在一起,从而有效避免了新的通风孔的形成。进行了数值模拟以研究通过玻璃板的传热过程,并很好地预测了玻璃板中的温度。提出了玻璃防火设计的建议。

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