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Effect of Smoke Source and Horn Configuration on Enhanced Deposition, Acoustic Agglomeration, and Chladni Figures in Smoke Detectors

机译:烟雾源和喇叭形状对烟雾探测器中增强的沉积,声团聚和Chladni图形的影响

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A series of UL/EN based test fires was conducted in a two room/corridor enclosure to investigate the viability of methods for determining whether a smoke detector sounded under a variety of smoke conditions and to see if this methodology could be applied to a detector with a different horn configuration. The presence of enhanced deposition in the form of a black or orange-brown ring and agglomerates around the central opening of a smoke detector horn was found to be a reliable indicator that the horn sounded when it was exposed to smoke from eight standardized, single-substrate fuel sources including hydrocarbon pool, flaming polyurethane foam, and smoldering polyurethane foam fires. Determinations could generally not be made for detectors exposed to white or gray smoke generated by flaming paper, smoldering paper, flaming wood, smoldering wood, and smoldering cotton wick due to a general lack of visible soot deposition within the detector. Therefore, it is not recommended to use the absence of a black or orange-brown ring of enhanced deposition, in and of itself, as an indicator that the horn did not sound. Nevertheless, this conclusion can be reached when the absence of enhanced deposition is combined with evidence supporting the presence of flaming fuels that produce black, sooty smoke. Test series were conducted using two different smoke detector brands, each having a different horn configuration. Findings suggest that the same type of methodology for determining whether the detector sounded is applicable to both models. Chladni figures were not found on any of the smoke detectors, whether they sounded or not; hence, the absence of a Chladni figure was not an indicator that the detector did not sound. A smoke flow visualization technique was used to determine the mechanism that caused the observed enhanced deposition and agglomerates on horns that sounded during a smoke exposure. Additionally, a smoke box test series showed that the extent of observed soot deposition increased with increasing smoke exposure.
机译:在两个房间/走廊的围墙中进行了一系列基于UL / EN的测试火灾,以研究确定烟雾探测器在各种烟雾条件下是否响起的方法的可行性,并查看该方法是否可以应用于带有烟雾的探测器。不同的喇叭配置。发现烟雾探测器喇叭中央开口周围呈黑色或橙棕色环状并附有团块形式的增强沉积物,是可靠的指示,表明当喇叭暴露于来自八种标准化,底物燃料来源包括碳氢化合物池,燃烧的聚氨酯泡沫和闷燃的聚氨酯泡沫火灾。由于通常在检测器内缺乏可见的烟尘沉积,因此通常无法对暴露于由发火的纸张,阴燃的纸张,燃烧的木材,阴燃的木质和阴燃的棉芯产生的白色或灰色烟雾所致的探测器进行测定。因此,不建议使用本身没有增强沉积的黑色或橙棕色环作为指示喇叭没有发声的指示。然而,当缺乏增强沉积的证据与支持燃烧产生黑烟的燃料的证据相结合时,可以得出该结论。测试系列是使用两个不同的烟雾探测器品牌进行的,每个品牌都有不同的喇叭配置。研究结果表明,用于确定探测器是否发声的相同类型的方法适用于两个模型。在任何烟雾探测器上都找不到Chladni的身影,无论它们是否发声;因此,没有Chladni身影并不表示检测器没有发声。烟气流动可视化技术用于确定引起观察到的沉积物增加和在烟尘暴露期间响起的喇叭上结块的机理。此外,烟箱测试系列表明,观察到的烟灰沉积程度随烟尘暴露量的增加而增加。

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