首页> 外文期刊>Combustion Science and Technology >EXPERIMENTAL AND KINETIC MODELING STUDY OF THE COMBUSTION OF n-DECANE, JET-A, AND S-8 IN LAMINAR PREMIXED FLAMES
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EXPERIMENTAL AND KINETIC MODELING STUDY OF THE COMBUSTION OF n-DECANE, JET-A, AND S-8 IN LAMINAR PREMIXED FLAMES

机译:层状预混火焰中正癸烷,JET-A和S-8燃烧的实验和动力学模型研究

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摘要

Laminar flame speeds and Markstein lengths of n-decanelair, Jet-Alair, and S-81air flames were measured using spherically expanding premixed flames. The experiment used a spherical combustion chamber housed inside a customized oven, which provides a uniform temperature distribution inside the chamber for fuel evaporation. Linear and nonlinear extrapolation methods to obtain unstretched flame speed were compared. The difference between linear and nonlinear extrapolation is within 0.3-2.0 cmls over the entire range of fuel equivalence ratio and decreases as the equivalence ratio increases. The measured flame speed data were compared to numerical simulations using several existing kinetic mechanisms and surrogate models. The results show that the JetSurF 0.2 mechanism was able to best represent the present measured flame speed data for n-decane. Surrogate models were simulated to represent the flame speeds of Jet-A and S-8. However, the simulated flame speeds overpredict the measured flame speeds. GC-MS and a negative ionization method were used to determine the composition change of the liquid fuels before and after heating/vaporization. The result shows that when the initial temperature is above 500 K, auto-oxidation occurred during the mixing process for Jet-A and S-8 flames, which likely produced ketones or aldehydes, resulting in falsely lower flame-speed data.
机译:使用球形膨胀的预混火焰测量正癸烷,Jet-Alair和S-81air火焰的层流火焰速度和Markstein长度。该实验使用了一个球形燃烧室,该燃烧室安装在一个定制的烤箱内,该燃烧室为燃烧室的燃料提供了均匀的温度分布。比较了用于获得未拉伸火焰速度的线性和非线性外推方法。在燃料当量比的整个范围内,线性和非线性外推之间的差异在0.3-2.0 cmls之内,并随着当量比的增加而减小。使用几种现有的动力学机制和替代模型,将测得的火焰速度数据与数值模拟进行了比较。结果表明,JetSurF 0.2机制能够最好地表示正癸烷的当前测量火焰速度数据。模拟了替代模型,以表示Jet-A和S-8的火焰速度。但是,模拟的火焰速度会高估测得的火焰速度。使用GC-MS和负离子化方法确定加热/蒸发前后液体燃料的成分变化。结果表明,当初始温度高于500 K时,Jet-A和S-8火焰的混合过程中会发生自氧化,这很可能会产生酮或醛,从而导致错误地降低了火焰速度数据。

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