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Mathematical Modeling of the Combustion of an Overfueled Aluminum-Air Mixture Based on the Nonequilibrium Thermodynamics of the Process

机译:基于整个工艺的非预测热力学燃烧燃烧的数学建模

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This paper presents the results of mathematical modeling of the combustion of flow of a multifractional suspension of an aluminum powder in air taking into account the nonequilibrium nature of the process. The calculations were performed for air-to-fuel ratios alpha = 0.1-0.5. Time dependences of thermodynamic parameters, the completeness of metal particle combustion, and the relative residence time of the fractions in the flow were obtained. The adequacy of the nonequilibrium model for describing thermodynamic processes was validated by comparing with the equilibrium model for time tending to a. The necessity of taking into account the formation of Al2O suboxide present in the range of the air-to-fuel ratio is analyzed and proved. The need to include nitriding reactions in the mathematical modeling for 0.1 aecurrency alpha 0.4 is shown by comparing the results of calculations based on equilibrium and nonequilibrium thermodynamics.
机译:本文介绍了在空气中铝粉末在空气中燃烧的燃烧的数学建模的结果,考虑到该方法的非Quigibibizium性质。 对空气 - 燃料比α= 0.1-0.5进行计算。 热力学参数的时间依赖性,得到金属颗粒燃烧的完整性,以及流动中的级分的相对停留时间。 通过与趋向于a的时间均衡模型进行比较,验证了用于描述热力学过程的非预测模型的充分性。 分析并证明了考虑到在空气到燃料比范围内的Al2O-亚氧化物的形成的必要性。 需要在数学建模中包括氮化反应0.1 ae&货币& alpha& 通过比较基于平衡和非QuigiBibribic热力学的计算结果来显示0.4。

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