Numerical study of the laminar flame propagation in ethane-air mixtures

V. Giurcan, D. Razus, M. Mitu, D. Oancea
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引用次数: 14

Abstract

AbstractThe structure of premixed free one-dimensional laminar ethane-air flames was investigated by means of numerical simulations performed with a detailed mechanism (GRI-Mech version 3.0) by means of COSILAB package. The work provides data on ethane-air mixtures with a wide range of concentrations ([C2H6] = 3.0–9.5 vol.%) at initial temperatures between 300 and 550 K and initial pressures between 1 and 10 bar. The simulations deliver the laminar burning velocities and the profiles of temperature, chemical species concentrations and heat release rate across the flame front. The predicted burning velocities match well the burning velocities measured in various conditions, reported in literature. The influence of initial concentration, pressure and temperature of ethane-air mixtures on maximum flame temperature, heat release rate, flame thickness and peak concentrations of main reaction intermediates is examined and discussed.
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乙烷-空气混合物中层流火焰传播的数值研究
摘要采用COSILAB程序包,采用GRI-Mech 3.0详细机理(GRI-Mech 3.0)对预混自由一维层流乙烷-空气火焰的结构进行了数值模拟。这项工作提供了在初始温度为300至550 K,初始压力为1至10 bar时,具有广泛浓度范围([C2H6] = 3.0-9.5 vol.%)的乙烷-空气混合物的数据。模拟得到了层流燃烧速度和火焰锋面温度、化学物质浓度和热释放率的分布。预测的燃烧速度与文献报道的在各种条件下测量的燃烧速度相匹配。考察和讨论了乙烷-空气混合物的初始浓度、压力和温度对最高火焰温度、放热速率、火焰厚度和主要反应中间体峰值浓度的影响。
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