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Numerical modeling for flame dynamics and combustion processes in a two-sectional porous burner with a detailed chemistry

机译:具有详细化学成分的两段式多孔燃烧器中火焰动力学和燃烧过程的数值模拟

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摘要

A two-dimensional model with the detailed chemistry and variable transport properties has been applied to numerically investigate the combustion processes and flame dynamics in the bilayer porous burner. To account for the velocity transition and diffusion influenced by solid matrix, porosity terms are included in the governing equations. Heat transfer coefficient is calculated by Nusselt number to reflect the effect of gas velocity, pore diameter, and material properties. The detailed chemistry is based on GRI 2.11. Numerical results indicate that the present approach is capable of the essential features of the premixed combustion in the porous media in terms of the precise flame structure, pollutant formation, and stabilization characteristics. In this bilayer porous burner, the heat transferred from the downstream flame zone is conducted to the upstream flame region through the solid matrix. This heat transfer process through the solid matrix substantially influences the flame structure and stabilization characteristics in the porous media. The predicted results are compared with experimental data in terms of temperature for gaseous mixture and solid matrix, CO and NO emission level. Based on numerical results, a precise comparison has been made for the freely propagating premixed flames and the premixed flames with a porous media for various inlet velocities.
机译:具有详细的化学性质和可变的传输特性的二维模型已被用于数值研究双层多孔燃烧器中的燃烧过程和火焰动力学。为了解决受固体基质影响的速度变化和扩散,控制方程中包括了孔隙度项。传热系数由Nusselt数计算,以反映气体速度,孔径和材料特性的影响。详细的化学过程基于GRI 2.11。数值结果表明,根据精确的火焰结构,污染物形成和稳定特性,本方法能够在多孔介质中进行预混燃烧的基本特征。在该双层多孔燃烧器中,从下游火焰区传递的热量通过固体基质传导至上游火焰区。通过固体基质的传热过程大大影响了多孔介质中的火焰结构和稳定性。根据气体混合物和固体基质的温度,CO和NO排放水平,将预测结果与实验数据进行了比较。根据数值结果,对自由传播的预混火焰和带有多种介质的多孔介质的预混火焰进行了精确比较。

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