首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Lower flammability limits of hybrid mixtures containing 10 micron coal dust particles and methane gas
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Lower flammability limits of hybrid mixtures containing 10 micron coal dust particles and methane gas

机译:含有10微米煤尘颗粒和甲烷气体的杂种混合物的降低可燃性限制

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Mixtures of combustible dust and flammable gas pose an increased explosion risk in processing equipment due to reduced flammability limits over the dust and gas alone. Although correlations have been proposed based on experimental testing for predicting the flammability limits of hybrid mixtures from those of the dust and gas, none appear to be applicable across a range of fuel mixtures. The objective of this work is to use computational fluid dynamics to explore the lower flammability limits of 10μm coal dust particles and methane gas under laminar, free-flame conditions, and to compare the limits to the experimentally determined mixing rules. This comparison gives an understanding of the baseline behaviour upon which different fuel mixtures, equipment geometry, and various operational conditions can be added in the future. The results from the computational model suggest that Le Chatelier's Law, which proposes linear mixing between the dust and gas limits, is applicable for the small particles studied. Bartknecht's curve, which proposes wider flammability limits than linear, appeared to be overly conservative, while new relations that predict narrowing of the limits did not appear to delineate flammable mixtures under the conditions investigated.
机译:可燃粉尘和易燃气体的混合物由于耐燃料和天然气降低而导致的加工设备中的爆炸风险增加。尽管基于实验测试提出了相关性,但是预测杂种混合物的抗燃烧性限制来自灰尘和气体的易燃性限制,似乎没有似乎适用于一系列燃料混合物。这项工作的目的是使用计算流体动力学来探讨层状,自由火焰条件下10μm煤尘颗粒和甲烷气体的较低燃烧性限制,并比较实验确定的混合规则的限制。该比较对未来可以了解不同燃料混合物,设备几何形状和各种操作条件的基线行为。计算模型的结果表明Le Chatelier的定律,其中提出了灰尘和气体限制之间的线性混合,适用于所研究的小颗粒。 Bartknecht的曲线提出比线性更宽的可燃性限制,似乎是过于保守的,而预测限制缩小的新关系并未在调查的条件下描绘易燃混合物。

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