混合燃料床的燃烧特性和烟雾排放
Aika Y Davis1, Thomas G Cleary1, Ryan L Falkenstein-Smith1
1Fire Research Division, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, United States.
概括
包装密度显著影响结构性火灾排放,影响燃烧效率和污染物释放超过婴儿床大小. 了解这些因素对于准确的消防安全评估至关重要.
科学领域:
- 消防科学 消防科学 消防科学
- 燃烧工程 燃烧工程
- 环境科学 环境科学
背景情况:
- 结构性火灾涉及复杂的燃料混合物,如木材,干墙和塑料.
- 了解燃烧特性和烟雾排放对于消防安全和环境影响评估至关重要.
研究的目的:
- 为了研究混合燃料婴儿床的燃烧特性和烟雾排放,这些婴儿床代表结构部件.
- 为了确定婴儿床尺度和包装密度对火灾行为和污染物产生的影响.
主要方法:
- 用木材,干板和塑料在一致的质量分数建造立方体婴儿床.
- 多种不同的婴儿床尺寸 (尺寸) 和包装密度.
- 使用火热计量测量热释放率 (HRR),燃烧气体和烟雾.
主要成果:
- 婴儿床尺度影响燃烧时间和总热量释放.
- 包装密度对修改的燃烧效率,峰值HRR和排放因子 (CO2,CO,甲,阿克罗莱因,SO2,总碳化合物) 有更大的影响.
- 尺度和包装密度的变化可以使排放估计变化20% (CO2,烟雾) 到130% (SO2,甲).
结论:
- 包装密度是评估结构性火灾及其排放的关键因素.
- 准确的火灾排放估计需要考虑规模和包装密度.
- 这项研究为改善消防安全模型和法规提供了必要的数据.
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