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SIMULATION OF TURBULENT COMBUSTION IN POROUS CERAMIC MATERIALS

机译:多孔陶瓷材料中湍流燃烧的模拟

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This paper presents two-dimensional numerical simulations of combustion of an air/methane mixture in a radial porous combustor using a model that explicitly considers the intra-pore levels of turbulent kinetic energy. Transport equations are written in their time-and-volume averaged form and a volume-based statistical turbulence model is applied to simulate turbulence generation due to the porous matrix. A cylindrical porous combustor is analyzed, in which the mixture flows inside it in the axial direction, being the flue gases ejected through the lateral surface. Combustion is modeled via a unique simple closure. For high excess air, the flame front moves towards the lateral exit of the burner. Also, increasing the inlet flow rate for stoichiometric mixture pushes the flame out of the porous material.
机译:本文使用明确考虑孔隙动能的孔内水平的模型,对径向多孔燃烧室中空气/甲烷混合物的燃烧进行了二维数值模拟。输运方程式以其时间和体积的平均形式编写,并且基于体积的统计湍流模型被应用于模拟由于多孔基体产生的湍流。分析了圆柱形的多孔燃烧器,其中混合物沿轴向在其内部流动,即通过侧面喷射的烟道气。通过独特的简单封闭来模拟燃烧。对于过多的空气,火焰前移向燃烧器的侧面出口。同样,增加化学计量混合物的入口流速将火焰从多孔材料中推出。

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