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LOCAL KARLOVITZ NUMBERS AT EXTINCTION FOR VARIOUS FUELS IN COUNTERFLOW PREMIXED FLAMES

机译:逆流混合火焰中各种燃料灭绝的局部卡洛维茨数

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Extinction characteristics of stretched premixed flames have been numerically investigated by adopting a detailed chemistry in an axisymmetric counterflow for various fuels. The Karlovitz number, defined as the ratio of the characteristic one-dimensional reaction time for an unstretched premixed flame to the characteristic flow time of the inverse of flame stretch rate, exhibited large spread at extinction conditions. To test a universal extinction criterion that can be applied irrespective of fuel type, equivalence ratio, pressure, and initial temperature, a local Karlovitz number was defined as the ratio of the local reaction time to the characteristic flow time of stretched flames. The result showed that the local Karlovitz number based on the flame thickness at extinction can be reasonably approximated as 1.1, irrespective of equivalence ratio for the fuels tested including alkane (methane and propane), alkene (ethylene), alkyne (acetylene), alcohol (methanol), and hydrogen. By analyzing existing experimental data for premixed flames of methane and propane, the measured local Karlovitz numbers at extinction have also been found to have a near constant value. The local Karlovitz number was relatively insensitive to pressure variation up to 10 atm and initial temperature up to 1000 K. The present results implied that extinction occurs when the ratio of the characteristic flow time to the local characteristic reaction time exceeds a near constant value for the fuels tested irrespective of equivalence ratio, pressure, and initial temperature.
机译:通过在各种燃料的轴对称逆流中采用详细的化学方法,对拉伸的预混火焰的消光特性进行了数值研究。卡洛维兹数(Karlovitz number)定义为未拉伸预混火焰的特征一维反应时间与火焰拉伸速率倒数的特征流动时间之比,在熄灭条件下展宽。为了测试可适用的通用熄灭标准,而不论燃料类型,当量比,压力和初始温度如何,都将局部卡洛维兹数定义为局部反应时间与拉伸火焰特征流动时间的比率。结果表明,基于熄火时火焰厚度的局部Karlovitz数可以合理地近似为1.1,而与所测试的燃料(包括烷烃(甲烷和丙烷),烯烃(乙烯),炔烃(乙炔),酒精(甲醇)和氢气。通过分析甲烷和丙烷的预混火焰的现有实验数据,在熄灭时测得的局部卡洛维兹数也已接近恒定值。局部Karlovitz数对高达10 atm的压力变化和高达1000 K的初始温度相对不敏感。本结果表明,当特征流时间与局部特征反应时间之比超过该值时,消光就会发生。与当量比,压力和初始温度无关的燃料。

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