首页> 外文期刊>Fire Technology >Melting and Dripping Flow Behaviors on the Downward Flame Spread of a Wide XPS Foam
【24h】

Melting and Dripping Flow Behaviors on the Downward Flame Spread of a Wide XPS Foam

机译:XPS宽泡沫向下火焰传播时的融化和滴流行为

获取原文
获取原文并翻译 | 示例
       

摘要

The XPS foam is an economical and popular material for building insulation. The fire hazard of the polymer foams is a big threat due to their fast burning with melting, dripping and flowing. The objective of this work is to investigate the complicated downward flame spread characteristics of a wide polymer foam. An image division and calculation method is used to analyze the dynamic downward movement of the irregular flame leading curves based on the experiments. The results show that the lagged sub-flames might suddenly spread downward fast and catch up the neighboring flames. And the increasing of the flame spread velocity and flame height illustrate the acceleration of the downward burning, which is induced by the dripping and accumulating of liquid fuel. Additionally, the local peaks of the flame spread velocity arrive later than the flame height for both overall flame and detailed sub-flames. The flame height increases in the stage of liquid fuel accumulation but decreased in the dripping stage. The dripping of liquid fuel results in the increasing of the flame spread velocity and decreasing of the flame height. The results also show that the relationship between the non-dimensional local peak sub-flame flow velocities and the corresponding non-dimensional peak sub-flame heights can be well described with a power function, which indicates that the introduction of the small sub-flames is effective to model the complicated downward flame spread behaviors of XPS foams with stochastic dripping. Finally, most of the delay times of local peak sub-flame velocities here are in the range of [15 s, 25 s].
机译:XPS泡沫是一种经济且流行的建筑隔热材料。聚合物泡沫的火灾隐患很大,因为它们会随着熔化,滴落和流动而快速燃烧。这项工作的目的是研究宽聚合物泡沫的复杂的向下火焰蔓延特性。在实验的基础上,采用图像分割和计算方法对不规则火焰超前曲线的动态向下运动进行了分析。结果表明,滞后的亚火焰可能突然迅速向下扩散并赶上邻近的火焰。火焰传播速度和火焰高度的增加说明了向下燃烧的加速,这是由液体燃料的滴落和积累引起的。另外,对于整体火焰和详细的亚火焰,火焰传播速度的局部峰值晚于火焰高度。在液体燃料积聚阶段,火焰高度增加,而在滴落阶段,火焰高度降低。液体燃料的滴落导致火焰传播速度的增加和火焰高度的减小。结果还表明,利用幂函数可以很好地描述无量纲局部亚火焰流速度与相应的无量纲峰值亚火焰高度之间的关系,这表明引入了小亚火焰可以有效地模拟XPS泡沫具有随机滴落的复杂的向下火焰蔓延行为。最后,此处局部峰值亚火焰速度的大多数延迟时间在[15 s,25 s]范围内。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号