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首页> 外文期刊>Russian journal of physical chemistry, B. >Autoignition and combustion of hydrocarbon-hydrogen-air homogeneous and heterogeneous ternary mixtures
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Autoignition and combustion of hydrocarbon-hydrogen-air homogeneous and heterogeneous ternary mixtures

机译:烃-氢-空气均质和非均质三元混合物的自燃和燃烧

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摘要

A numerical simulation of the ignition and combustion of hydrocarbon-hydrogen-air homogeneous and heterogeneous (gas-drop) ternary mixtures for three hydrocarbon fuels (n-heptane, n-decane, and n-dodecane) is for the first time performed. The simulation is carried out based on a fully validated detailed kinetic mechanism of the oxidation of n-dodecane, which includes the mechanisms of the oxidation of n-decane, n-heptane, and hydrogen as constituent parts. It is demonstrated that the addition of hydrogen to a homogeneous or heterogeneous hydrocarbon-air mixture increases the total ignition delay time at temperatures below 1050 K, i.e., hydrogen acts as an ignition inhibitor. At low temperatures, even ternary mixtures with a very high hydrogen concentration show multistage ignition, with the temperature dependence of the ignition delay time exhibiting a negative temperature coefficient region. Conversely, the addition of hydrogen to homogeneous and heterogeneous hydrocarbon-air mixtures at temperatures above 1050 K reduces the total ignition delay time, i.e., hydrogen acts as an autoignition promoter. These effects should be kept in mind when discussing the prospects for the practical use of hydrogen-containing fuel mixtures, as well as in solving the problems of fire and explosion safety.
机译:首次进行了三种烃类燃料(正庚烷,正癸烷和正十二烷)的烃-氢-空气均质和非均质(气体滴)三元混合物着火和燃烧的数值模拟。基于充分验证的正十二烷氧化的详细动力学机理进行模拟,其中包括正癸烷,正庚烷和氢作为组成部分的氧化机理。已经证明,在低于1050K的温度下,向均相或非均相的烃-空气混合物中添加氢会增加总的点火延迟时间,即,氢起着点火抑制剂的作用。在低温下,即使氢浓度很高的三元混合物也会显示多级点火,而点火延迟时间的温度依赖性显示出负温度系数区域。相反,在高于1050 K的温度下向均相和非均相的烃-空气混合物中添加氢会减少总的点火延迟时间,即,氢起自燃促进剂的作用。在讨论实际使用含氢燃料混合物的前景以及解决火灾和爆炸安全问题时,应牢记这些影响。

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