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Filtration Combustion of a Carbon—Inert Material System in the Regime with Superadiabatic Heating

机译:超绝热加热条件下碳惰性材料系统的过滤燃烧

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Superadiabatic regimes of combustion of carbon mixed with an inert solid with filtration of the steam—air mixture are studied theoretically and experimentally. The temperature in the combustion wave and the composition of gaseous products are obtained as functions of the fraction of carbon in the fuel and the amount of steam in the gaseous oxidant. In the examined range of the control parameters, the maximum temperature in the combustion wave is shown to depend only slightly on the fraction of carbon in the mixture and the amount of steam in the oxidant gas. Simulations of filtration combustion of carbon with allowance for the kinetics of its oxidation are in good agreement with experimental results. The calculated combustion temperature coincides with that measured in experiments. In calculating the composition of the gaseous products, coincidence with experimental data is observed only for particular compositions with the mass content of carbon under 60%. As the fraction of the fuel exceeds 60%, the yield of CO and H2 increases in experiments, though such a behavior is not predicted by the theoretical analysis. Hypotheses on the reasons for the disagreement in results are put forward and experimentally checked.
机译:理论上和实验上都研究了碳与惰性固体混合并过滤蒸汽-空气混合物的超级绝热燃烧方式。获得燃烧波中的温度和气态产物的组成,其取决于燃料中碳的含量和气态氧化剂中的蒸汽量的函数。在所检查的控制参数范围内,燃烧波的最高温度仅显示出略微取决于混合物中碳的含量和氧化剂气体中的蒸汽量。考虑到碳的氧化动力学,对碳进行过滤燃烧的模拟与实验结果非常吻合。计算出的燃烧温度与实验中测得的温度一致。在计算气态产物的组成时,仅对碳质量含量低于60%的特定组成观察到与实验数据一致。当燃料的比例超过60%时,尽管理论分析并未预测到这种行为,但实验中CO和H2的收率增加。提出了关于结果不一致的假设,并进行了实验检验。

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