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Computed flammability limits of opposed-jet H_2/CO syngas diffusion flames

机译:反向喷射H_2 / CO合成气扩散火焰的可燃极限计算值

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Extensive computations were made to determine the flammability limits of opposed-jet H_2/ CO syngas diffusion flames from high stretched blowoff to low stretched quenching. Results from the U-shape extinction boundaries indicate the minimum hydrogen concentrations for H_2/CO syngas to be combustible are larger towards both ends of high strain and low strain rates. The most flammable strain rate is near one s~(-1) where syngas diffusion flames exist with minimum 0.002% hydrogen content. The critical oxygen percentage (or limiting oxygen index) below which no diffusion flames could exist for any strain rate was found to be 4.7% for the equal-molar syngas fuels (H_2/CO = 1), and the critical oxygen percentage is lower for syngas mixture with higher hydrogen content. The flammability maps were also constructed with strain rates and pressures or dilution gases percentages as the coordinates. By adding dilution gases such as CO_2, H_2O, and N_2 to make the syngas non-flammable, besides the inert effect from the diluents, the chemical effect of H_2O contributes to higher flame temperature, while the radiation effect of H_2O and CO_2 plays an important role in the flame extinction at low strain rates.
机译:进行了广泛的计算,以确定从高拉伸吹气到低拉伸淬火的对流H_2 / CO合成气扩散火焰的可燃性极限。 U形消光边界的结果表明,可燃H_2 / CO合成气的最小氢浓度在高应变率和低应变率的两端都较大。最易燃的应变速率接近1 s((-1),其中存在合成气扩散火焰,氢含量最少为0.002%。对于等摩尔合成气燃料(H_2 / CO = 1),发现在任何应变率下均不存在扩散火焰的临界氧百分比(或极限氧指数)为4.7%,而对于等摩尔合成气燃料,临界氧百分比较低。氢含量较高的合成气混合物。还以应变率和压力或稀释气体百分比为坐标绘制了可燃性图。通过添加稀释气体(例如CO_2,H_2O和N_2)使合成气不可燃,除了稀释剂的惰性作用外,H_2O的化学作用还有助于提高火焰温度,而H_2O和CO_2的辐射作用起着重要的作用。在低应变率下起着火焰熄灭的作用。

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