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Effects of turbulator angle and hydrogen addition on a biogas turbulent diffusion flame

机译:湍流器角度和氢气添加对沼气湍流扩散火焰的影响

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This study is concerned with combustion characteristics of a biogas under varying turbulator angle conditions and hydrogen addition in a combustor. Turbulator angles have been changed 15 degrees-45 degrees at intervals of 15 degrees. Investigations have been performed by using a CFD code. PDF/Mixture Fraction combustion and k-epsilon standard turbulence models were used during predictions. The predicted temperature and emission profiles of the biogas are compared with the existing experimental measurements under turbulator angle of 15 degrees. These predictions are in good agreement with the measurements in terms of distributions and values. It has been determined that percentage differences between the measured and the predicted values vary from about 0% to 12%. Then, predictions have been performed under 30 and 45 of turbulator angle cases and compared with each other. The effect of the hydrogen addition to the biogas fuel on combustion performances of the biogas has also been studied in the present study. Findings show that changes in turbulator angles highly affect the temperature and emission profiles of the biogas throughout the combustion chamber. Especially, the flame temperature zones move to the downstream of the burner. It may be also said that the flame temperatures of the biogas increase as the turbulator angle is changed due to better fuel air mixture. In addition to these findings, it is demonstrated that the axial temperature levels increase as the hydrogen is added into the biogas. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究涉及在变化的湍流器角度条件下沼气的燃烧特性以及燃烧器中的氢气添加。涡轮角度已以15度的间隔更改为15度至45度。已经使用CFD代码进行了调查。 PDF /混合物分数燃烧和k-ε标准湍流模型在预测期间使用。在15度的湍流角下,将沼气的预测温度和排放曲线与现有实验测量值进行了比较。这些预测与分布和值方面的测量结果非常吻合。已经确定,测量值和预测值之间的百分比差异在大约0%到12%之间变化。然后,已在30和45的湍流角情况下进行了预测,并进行了比较。在本研究中还研究了向沼气燃料中添加氢气对沼气燃烧性能的影响。研究结果表明,湍流器角度的变化会极大地影响整个燃烧室中沼气的温度和排放曲线。特别是,火焰温度区域移至燃烧器的下游。还可以说,由于更好的燃料空气混合物,随着湍流器角度的改变,沼气的火焰温度也会升高。除了这些发现之外,还表明轴向温度水平会随着将氢气添加到沼气中而增加。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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