论文标题

纤维素和半纤维素混合物中的燃烧燃烧:检查密度,燃料成分,氧气浓度和水分含量的作用

Smoldering combustion in cellulose and hemicellulose mixtures: Examining the roles of density, fuel composition, oxygen concentration, and moisture content

论文作者

Jayasuriya, W. Jayani, Mulky, Tejas Chandrashekhar, Niemeyer, Kyle E.

论文摘要

闷烧的燃烧在森林,草原和泥炭地的野火中起着关键作用,因为它在泥炭和达夫等多孔燃料中的常见发生。结果,了解这些燃料中的闷烧行为至关重要。这种燃料通常由纤维素,半纤维素和木质素组成。在这里,我们提出了一个更新的计算模型,用于模拟纤维素和半纤维素混合物中的闷烧燃烧。我们使用该模型来检查闷烧的传播速度和峰值温度的变化,其燃料组成和密度变化。对于给定的燃料组成,密度的增加会降低传播速度并增加平均峰值温度;对于给定的密度,半纤维素含量的增加既会提高传播速度和峰值温度。我们还通过加水来检查自然燃料扩展的作用。没有膨胀,添加水分含量会降低传播速度,这主要是由于(湿)燃料密度增加所致。但是,随着燃料膨胀类似于泥炭中观察到的燃料,由于燃料密度的总体下降,繁殖速度会增加。最后,我们研究了燃料成分对临界点火和灭绝临界水分含量的影响:由半纤维素主导的混合物由于峰值温度的升高而具有10%的临界水分含量。

Smoldering combustion plays a key role in wildfires in forests, grasslands, and peatlands due to its common occurrence in porous fuels like peat and duff. As a consequence, understanding smoldering behavior in these fuels is crucial. Such fuels are generally composed of cellulose, hemicellulose, and lignin. Here we present an updated computational model for simulating smoldering combustion in cellulose and hemicellulose mixtures. We used this model to examine changes in smoldering propagation speed and peak temperatures with varying fuel composition and density. For a given fuel composition, increases in density decrease the propagation speed and increase mean peak temperature; for a given density, increases in hemicellulose content increase both propagation speed and peak temperature. We also examined the role of natural fuel expansion with the addition of water. Without expansion, addition of moisture content reduces the propagation speed primarily due to increasing (wet) fuel density. However, with fuel expansion similar to that observed in peat, the propagation speed increases due to the overall drop in fuel density. Finally, we studied the influence of fuel composition on critical moisture content of ignition and extinction: mixtures dominated by hemicellulose have 10% higher critical moisture content due to the increase in peak temperature.

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