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Joint experimental and numerical study of the influence of flame holder temperature on the stabilization of a laminar methane flame on a cylinder

机译:火焰架温度对气瓶内层流甲烷火焰稳定性影响的联合实验和数值研究

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The mechanisms controlling laminar flame anchoring on a cylindrical bluff-body are investigated using DNS and experiments. Two configurations are examined: water-cooled and uncooled steel cylinders. Comparisons between experimental measurements and DNS show good agreement for the flame root locations in the two configurations. In the cooled case, the flame holder is maintained at about 300 K and the flame is stabilized in the wake of the cylinder, in the recirculation zone formed by the products of combustion. In the uncooled case, the bluff-body reaches a steady temperature of about 700 K in both experiment and DNS and the flame is stabilized closer to it. The fully coupled DNS of the flame and the temperature field in the bluff-body also shows that capturing the correct radiative heat transfer from the bluff-body is a key ingredient to reproduce experimental results. (C) 2016 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:使用DNS和实验研究了控制层状火焰锚定在圆柱状钝体上的机制。检查了两种配置:水冷和不冷钢瓶。实验测量结果和DNS之间的比较表明,在两种配置中,火焰根部位置具有良好的一致性。在冷却的情况下,在由燃烧产物形成的再循环区域中,火焰保持器保持在约300 K,并且火焰在汽缸的尾流处稳定。在未冷却的情况下,在实验和DNS中,钝体均达到约700 K的稳定温度,并且火焰更加稳定。火焰与钝体中温度场的完全耦合DNS也表明,从钝体中捕获正确的辐射热传递是重现实验结果的关键因素。 (C)2016年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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