首页> 外文期刊>International journal of hydrogen energy >Hydrogen-enriched non-premixed jet flames: Analysis of the flame surface, flame normal, flame index and Wobbe index
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Hydrogen-enriched non-premixed jet flames: Analysis of the flame surface, flame normal, flame index and Wobbe index

机译:富氢非预混喷射火焰:火焰表面,火焰法线,火焰指数和沃泊指数的分析

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摘要

A non-premixed impinging jet flame is studied using three-dimensional direct numerical simulation with detailed chemical kinetics in order to investigate the influence of fuel variability on flame surface, flame normal, flame index and Wobbe index for hydrogen-enriched combustion. Analyses indicate that the fuel composition greatly influences the H_2/CO syngas combustion, not only on the important local stoichiometric iso-mixture fraction surface distribution but also on the vortical structures in the flow field. As a result of CO addition to hydrogen-rich combustion, changes of the reaction zone in the flammable layer, shift of peak flame surface density distribution, shift of non-premixed regions, formation of widely populated scalar dissipation distribution rate with respect to tangential strain and reduction of global heat release are all found to appear. In particular, the CO addition induces a micromixing process which appears to be an important factor for the modelling investigation of turbulence/chemistry interaction especially for combustion modelling of H_2-rich syngas fuels.
机译:为了研究燃料可变性对富氢燃烧的火焰表面,火焰法线,火焰指数和Wobbe指数的影响,使用具有详细化学动力学的三维直接数值模拟研究了非预混合撞击射流火焰。分析表明,燃料成分不仅对重要的局部化学计量的等混合分数表面分布,而且对流场中的旋涡结构都有很大的影响,对H_2 / CO合成气的燃烧有很大的影响。由于将CO添加到富氢燃烧中,易燃层中的反应区发生了变化,峰值火焰表面密度分布发生了变化,非预混区域发生了变化,相对于切向应变形成了分布广泛的标量耗散分布率并发现整体放热减少。特别地,CO的添加引起微混合过程,这似乎是湍流/化学相互作用的模型研究的重要因素,特别是对于富H_2的合成气燃料的燃烧模型。

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