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Numerical study of the effects of material properties on flame stabilization in a porous burner

机译:材料性能对多孔燃烧器火焰稳定影响的数值研究

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Development of porous burners has been encouraged by lower emission standards as well as the advantages these burners offer; such as fuel flexibility, the ability to operate at low equivalence ratios, and effective flame speeds greater than the laminar flame speed. Although a burner may be constructed from a single section of porous media, a burner consisting of two sections with different characteristics has received significant attention in the last decade. Through proper selection of the properties of the two sections, the interface between the two sections serves as a flame holder preventing flashback for a range of conditions. In this paper, we present the results from a one-dimensional computational study on flame stabilization in a two section porous burner. The stable operating limits are predicted for a range of equivalence ratios and are compared to experimental values. A parametric study, in which the properties of the two sections are varied independently, is presented. The results indicate that matrix properties significantly affect the stable operating range. In addition, the upstream section acts primarily as a flashback arrestor and for the widest operating range, it should have a low conductivity, low volumetric heat transfer coefficient, and high radiative extinction coefficient. The downstream section acts primarily to recirculate heat through the matrix; it should have a high conductivity, high volumetric heat transfer coefficient, and an intermediate radiative extinction coefficient.
机译:较低的排放标准以及这些燃烧器提供的优势鼓励了多孔燃烧器的发展。例如燃料的灵活性,在低当量比下运行的能力以及有效的火焰速度大于层流火焰速度。尽管燃烧器可以由多孔介质的单个部分构成,但是在过去的十年中,由具有不同特性的两个部分组成的燃烧器受到了极大的关注。通过适当选择两个部分的特性,两个部分之间的界面可作为火焰保持器,在一定条件下防止回火。在本文中,我们介绍了对两段式多孔燃烧器的火焰稳定进行一维计算研究的结果。可以预测一系列当量比的稳定运行极限,并将其与实验值进行比较。提出了参数研究,其中两个部分的属性独立变化。结果表明,基体性质显着影响稳定的工作范围。此外,上游部分主要用作回火避雷器,并且在最宽的工作范围内,它应具有低电导率,低体积传热系数和高辐射消光系数。下游部分的主要作用是使热量通过基体循环。它应该具有高电导率,高体积传热系数和中等的辐射消光系数。

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