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Theoretical analysis of superadiabatic combustion for non-stationary filtration combustion by excess enthalpy function

机译:过度焓函数非平稳过滤燃烧的高级燃烧理论分析

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The superadiabatic combustion for non-stationary filtration combustion is analytically studied. The non-dimensional excess enthalpy function ( H ) equation is theoretically derived based on a one-dimensional, two-temperature model. In contrast to the H equation for the stationary filtration combustion, a new term, which takes into account the effect of non-dimensional combustion wave speed, is included in the H equation for transient filtration combustion. The governing equations with boundary conditions are solved by commercial software Fluent. The predictions show that the maximum non-dimensional gas and solid temperatures in the flame zone are greater than 3 for equivalence ratio of 0.15. An examination of the four source terms in the H equation indicates that the thermal conductivity ratio ( Γ s ) between the solid and gas phases is the dominant one among the four terms and basically determines H distribution. For lean premixed combustion in porous media, the superadiabatic combustion effect is more pronounced for the lower Γ s .
机译:研究了用于非静止过滤燃烧的超级燃烧。基于一维的双温度模型理论地导出非维度过量焓函数(H)方程。与固定过滤燃烧的H方程相反,一种新的术语,其考虑了非尺寸燃烧波速的影响,包括在用于瞬态过滤燃烧的H方程中。具有边界条件的管理方程由商业软件流畅解决。预测表明,火焰区中的最大非尺寸气体和固体温度大于3的等效比为0.15。对H方程中的四个源术语的检查表明,固体和气体阶段之间的导热比(γs)是四个术语中的主导,基本上决定了H分布。对于多孔介质中的精益预混燃烧,对下γs的高级燃烧效果更加明显。

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