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On the off-stoichiometric peaking of adiabatic flame temperature

机译:绝热火焰温度的化学计量比峰值

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The characteristic rich shifting of the maximum adiabatic flame temperature from the stoichiometric value for mixtures of hydrocarbon and air is demonstrated to be caused by product dissociation and hence reduced amount of heat release. Since the extent of dissociation is greater on the lean side as a result of the stoichiometry of dissociated products, the peaking occurs on the rich side. The specific heat per unit mass of the mixture is shown to increase monotonically with increasing fuel concentration, and as such tends to shift the peak toward the lean side. It is further shown that this is the cause for the lean shifting of the adiabatic flame temperature of oxidizer-enriched mixtures of N_mH_n and F_2 and of NH_3 and O_2, with various amounts of inert dilution, even though their maximum heat release still peaks on the rich side.
机译:已证明最大绝热火焰温度相对于碳氢化合物和空气的混合物的化学计量值的特征性富移是由产物离解引起的,因此热量释放量减少。由于解离产物的化学计量的结果,在贫化侧解离程度更大,因此在富化侧发生峰化。混合物的每单位质量的比热显示出随着燃料浓度的增加而单调增加,并因此趋向于向贫油侧移动峰。进一步表明,这是N_mH_n和F_2以及NH_3和O_2的氧化剂富集混合物的绝热火焰温度发生稀薄变化的原因,尽管它们的最大热量释放仍在色谱柱上达到峰值,但惰性稀释量不同。丰富的一面。

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