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Combustion characteristics and flame stability at the microscale: a CFD study of premixed methane/air mixtures

机译:微型燃烧特性和火焰稳定性:甲烷/空气预混合气的CFD研究

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A two-dimensional elliptic, computational fluid dynamics (CFD) model of a microbumer is solved to study the effects of microburner dimensions, conductivity and thickness of wall materials, external heat losses, and operating conditions on combustion characteristics and flame stability. We have found that the wall conductivity and thickness are very important as they determine the upstream heat transfer, which is necessary for flame ignition and stability, and the material's integrity by controlling the existence of hot spots. Two modes of flame extinction occur: a spatially global type for large wall thermal conductivities and/or low flow velocities and blowout. It is shown that there exists a narrow range of flow velocities that permit sustained combustion within a microburner. Large transverse and axial gradients are observed even at these small scales under certain conditions. Periodic oscillations are observed near extinction in cases of high heat loss. Engineering maps that delineate flame stability, extinction, and blowout are constructed. Design recommendations are finally made. (C) 2003 Elsevier Ltd. All rights reserved. [References: 31]
机译:解决了微型燃烧器的二维椭圆计算流体动力学(CFD)模型,以研究微型燃烧器的尺寸,壁材料的电导率和厚度,外部热量损失以及运行条件对燃烧特性和火焰稳定性的影响。我们发现壁的电导率和厚度非常重要,因为它们决定了上游的传热,这对于火焰的点火和稳定性是必需的,并且通过控制热点的存在来保证材料的完整性。出现两种火焰熄灭模式:一种空间整体型,用于大壁导热率和/或低流速和爆裂。结果表明,存在狭窄的流速范围,该流速允许微燃烧器内持续燃烧。即使在某些条件下,即使在这些小比例尺上,也观察到较大的横向和轴向梯度。在高热损失的情况下,在灭绝附近观察到周期性振荡。绘制出描述火焰稳定性,熄灭和爆燃的工程图。最后提出设计建议。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:31]

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