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首页> 外文期刊>International journal of hydrogen energy >Numerical simulations of steady perforated-plate stabilized Syngas air pre-mixed flames
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Numerical simulations of steady perforated-plate stabilized Syngas air pre-mixed flames

机译:稳定的多孔板稳定合成气空气预混火焰的数值模拟

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Numerical investigations of steady, laminar premixed Syngas-air flames are presented in this paper. Three-dimensional simulations were performed to examine the impact of operating conditions on steady state characteristics of perforated burner flame. A detailed H-2-CO reaction mechanism having 12 species and 38 reactions was used for combustion modelling. The three dimensional simulation results are validated against the 1D flat flame result using PREMIX. Effects of inlet velocity, fuel composition and equivalence ratio on flame stability were examined. A clearly identified recirculation zone was present above the top surface of the burner plate in the case of 50% H-2-50% CO Syngas mixture. The strength recirculation zone was diminishing with the increase in percentage of hydrogen in the Syngas mixture, and the flame has stabilized closer to the top surface of the burner plate. The flame stand-off distance is found to decrease with increase in inlet velocity. Effect of increase in H-2 fraction in Syngas has less effect on flame height at higher H-2 fractions. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文介绍了稳定的层流预混合成气-空气火焰的数值研究。进行了三维模拟,以检查操作条件对穿孔燃烧器火焰稳态特性的影响。详细的H-2-CO反应机理包括12种和38个反应,用于燃烧建模。使用PREMIX对一维平面火焰结果验证了三维模拟结果。研究了进气速度,燃料成分和当量比对火焰稳定性的影响。在50%H-2-50%CO合成气混合物的情况下,在燃烧器板顶表面上方有一个清晰识别的再循环区。强度再循环区随着合成气混合物中氢气百分比的增加而减小,并且火焰在靠近燃烧器板顶表面的地方稳定下来。发现火焰支座距离随着入口速度的增加而减小。合成气中H-2分数的增加对H-2分数较高的火焰高度的影响较小。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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