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混合燃料木垛的燃烧特性与烟雾排放

Burning Characteristics and Smoke Emission from Mixed Fuel Cribs.

作者信息

Davis Aika Y, Cleary Thomas G, Falkenstein-Smith Ryan L, Bryant Rodney A

机构信息

Fire Research Division, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, United States.

出版信息

ACS EST Air. 2025 Mar 21;2(4):540-547. doi: 10.1021/acsestair.4c00275. eCollection 2025 Apr 11.

Abstract

Experiments were conducted to study the burning characteristics and smoke emission from mixed fuel crib assemblies designed to represent the main components in structures. Cribs consisting of wood, drywall, and plastics were assembled into cubic structures, all with the same mass fraction for each material. Three packing densities and two crib sizes were studied. While a crib burned to completion, the smoke was collected in a fire calorimetry system for the heat release rate (HRR), combustion gases, and smoke measurements. The scale of cribs affected the burn duration and the total heat release, but the packing density had a greater effect on modified combustion efficiency, peak HRR, and the emission factors of CO, CO, formaldehyde, acrolein, SO, and total hydrocarbons. The variability in scale and packing density studied here can affect the structure fire emission estimates by 20% for CO and smoke and up to 130% for SO and formaldehyde. Therefore, packing density must be considered to properly evaluate structural fires.

摘要

进行了实验,以研究旨在代表建筑物主要部件的混合燃料木垛组件的燃烧特性和烟雾排放。由木材、干墙和塑料组成的木垛被组装成立方体结构,每种材料的质量分数均相同。研究了三种堆积密度和两种木垛尺寸。当一个木垛完全燃烧时,烟雾在火灾量热系统中收集,用于测量热释放率(HRR)、燃烧气体和烟雾。木垛的尺寸影响燃烧持续时间和总热释放,但堆积密度对修正燃烧效率、峰值HRR以及一氧化碳、二氧化碳、甲醛、丙烯醛、二氧化硫和总碳氢化合物的排放因子有更大影响。此处研究的尺寸和堆积密度的变化可使结构火灾排放估计值中一氧化碳和烟雾的变化达20%,二氧化硫和甲醛的变化高达130%。因此,必须考虑堆积密度以正确评估结构火灾。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b477/11997947/9e79791efa70/ea4c00275_0001.jpg

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