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Effect of Fuel Composition on the Response of an Acoustically Forced Flat Flame.

机译:燃料成分对助听平焰响应的影响。

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摘要

Interest in alternative fuels for power generation is growing, yet these fuels bring new challenges to gas turbine design and operation. Among these challenges are combustor operability issues, highlighted by problems with combustion instabilities. For this thesis, a fundamental study of the effects of fuel composition on combustion dynamics was undertaken. An acoustically forced flat flame burner was constructed, allowing measurement of the flame transfer function (FTF) relating acoustic perturbations to heat release rate fluctuations in the flame. Tests were done using methane, along with simulated syngas and biogas fuel mixtures over a variety of operating conditions. Large variations in methane concentration had a significant impact on the FTF, while variations in the hydrogen to carbon monoxide ratio did not impact the FTF in fuel mixtures of equal parts methane and syngas. The Strouhal number was found to be an important parameter in predicting phase response independent of the fuel type. Flame liftoff distance and fuel composition were the key parameters determining the peak FTF magnitude. A hypothesis on the role of the non-adiabatic nature of the flat flame and thermal-diffusive effects on the trends in peak FTF magnitude is presented and discussed.
机译:对用于发电的替代燃料的兴趣正在增长,但是这些燃料给燃气轮机的设计和运行带来了新的挑战。这些挑战包括燃烧室的可操作性问题,其中突出的是燃烧不稳定性问题。为此,本文对燃料成分对燃烧动力学的影响进行了基础研究。构造了一个声学强制平面火焰燃烧器,可以测量火焰传递函数(FTF),该函数将声学扰动与火焰中的热释放速率波动相关联。在各种操作条件下,使用甲烷以及模拟的合成气和沼气燃料混合物进行了测试。甲烷浓度的较大变化对FTF有重大影响,而氢气与一氧化碳之比的变化对甲烷和合成气等份的燃料混合物中的FTF则没有影响。发现Strouhal数是独立于燃料类型的预测相位响应的重要参数。火焰升空距离和燃料成分是决定峰值FTF幅度的关键参数。提出并讨论了关于平面火焰的非绝热性质的作用和热扩散效应对峰值FTF幅度趋势的假设。

著录项

  • 作者

    Gorski, Jan.;

  • 作者单位

    Carleton University (Canada).;

  • 授予单位 Carleton University (Canada).;
  • 学科 Engineering Aerospace.;Energy.;Engineering Mechanical.
  • 学位 M.A.Sc.
  • 年度 2013
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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