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Experimental study and theoretical calculation of flammability limits of methane/air mixture at elevated temperatures and pressures

机译:高温高压下甲烷/空气混合物可燃极限的实验研究和理论计算

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The flammability limits of methane/air mixture were experimentally studied at a temperature range of 30-150 degrees C and a pressure range of 0.1-0.9 MPa. The lower flammability limit (LFL) was calculated using a limiting flame temperature concept (White's role) and the temperature dependence of geometric mean G was also defined to predict the upper flammability limit (UFL). The results show that in our experiment, the influence of temperature and pressure on flammability limits show accordance with previous studies. The calculated LFL results using limiting flame temperature concept shows good agreement with the experimental values. The temperature dependence of geometric mean G remains unchanged at a certain pressure no matter what the temperature is. Within the temperature range examined in this paper, the UFL results can be predicted very accurately using the temperature dependence of geometric mean G. However, it is worth noting that with the increase of the initial temperature, the difference between experimental UFL and calculated UFL using geometric mean G becomes larger. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在30-150摄氏度的温度范围和0.1-0.9 MPa的压力范围内,对甲烷/空气混合物的可燃极限进行了实验研究。使用极限火焰温度概念(White的作用)计算可燃性下限(LFL),并且还定义了几何平均值G的温度依赖性,以预测可燃性上限(UFL)。结果表明,在我们的实验中,温度和压力对可燃性极限的影响与以前的研究一致。使用极限火焰温度概念计算的LFL结果与实验值显示出良好的一致性。无论温度如何,几何平均值G的温度依赖性在一定压力下均保持不变。在本文研究的温度范围内,使用几何平均数G的温度依赖性可以非常准确地预测UFL结果。但是,值得注意的是,随着初始温度的升高,实验UFL与使用UML计算的UFL之间的差异几何平均值G变大。 (C)2016 Elsevier Ltd.保留所有权利。

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