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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental study of interlayer effect induced by building facade curtain wall on downward flame spread behavior of polyurethane
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Experimental study of interlayer effect induced by building facade curtain wall on downward flame spread behavior of polyurethane

机译:建筑外墙幕墙对聚氨酯向下火焰扩散行为引起的层间效应的实验研究

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摘要

This paper presents an experimental investigation on interlayer effect induced by curtain wall, parallel to the building exterior facade, on thermal and burning behavior of insulation material flexible polyurethane (FPU). Results show that, downward flames propagation behavior along the interlayer was determined by the coupling effects including chimney effect, constraint effect and related heat transfer variation induced by curtain wall. Firstly, comparing to the occasionally melting-dripping phenomenon without curtain wall, continuous melting-dripping liquids were generated subject to positively heat feedback by internal heat radiation to the incomplete ember layer at later combustion stage, which is more distinct for narrow curtain wall spacing. Secondly based on the analysis of heat feedback and the dripping degree, the non-monotonous relation between mass loss and spacing D was interpreted. Thirdly, flame physical variations e.g., height and stretching induced by complex turbulence were discussed with plate flow theory. Furthermore, hot gas temperature field along board surface centerline and sideline were compared. Due to the insufficient combustion and cooling of upwards air entrainment, temperature along centerline was found to be lower generally, which is different from the free burning. In addition, analysis on radiation flux development with soot blockage effect and also flame spread velocity was proposed.
机译:本文介绍了幕墙引起的层间效应的实验研究,平行于建筑外观,在绝缘材料柔性聚氨酯(FPU)的热和燃烧行为上。结果表明,沿着中间层的向下火焰传播行为由包括烟囱效应,约束效果和由幕墙引起的相关传热变化的耦合效应确定。首先,与没有幕墙的偶尔熔化滴脱现象的比较,产生连续熔化的液体,经受通过内部热辐射到不完全燃烧阶段的内部热辐射的阳性热反馈,这对于窄幕壁间距而言更为不同。其次是基于热反馈的分析和滴度程度,解释了质量损失和间距D之间的非单调关系。第三,用板流理论讨论了由复杂湍流诱导的高度和拉伸的火焰物理变化。此外,比较了沿着板表面中心线和侧链的热气体温度场。由于向上空气夹带的燃烧和冷却不足,发现沿着中心线的温度通常与自由燃烧不同。此外,提出了用烟灰堵塞效应的辐射助焊效应的分析以及火焰扩散速度。

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