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Effect of air-preheating on NOx emissions from a gas turbine combustor

机译:空气预热对燃气轮机燃烧室NOx排放的影响

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摘要

A 76 mm diameter can combustor equipped with a 45° curved-blade radial swirler was used to study the effect of high inlet temperature gas turbine combustion on NOx emission characteristics. High inlet temperature combustion was simulated using preheat air at 400°K, 600°K, 740°K and 900°K. Natural gas was investigated using passage injection technique. It was demonstrated that increasing the inlet air temperature significantly widened the weak extinction limit and improved the NOx emission characteristics. An optimum NOx emission of less than 4.5 ppm at 15% oxygen, compatible with 99% efficiency was demonstrated at 900K inlet temperature. It was also demonstrated that with high inlet temperature operation lean well-mixed combustion required for an adequate control of NOx emissions could be achieved. The major conclusion reached is that high inlet temperature combustion could be a promising approach for low NOx emissions with high combustion efficiency and good flame stability.
机译:直径为76毫米的罐式燃烧室配有45°弯叶片径向旋流器,用于研究进气温度较高的燃气轮机燃烧对NOx排放特性的影响。使用在400°K,600°K,740°K和900°K的预热空气来模拟高进气温度燃烧。使用通道注入技术研究了天然气。事实证明,提高进气温度可显着拓宽弱消光极限并改善NOx排放特性。在900K的入口温度下,最佳的NOx排放在15%的氧气下小于4.5 ppm,与99%的效率兼容。还证明了在高入口温度操作下,可以实现充分控制NOx排放所需的稀薄混合燃烧。得出的主要结论是,高入口温度燃烧可能是一种具有高燃烧效率和良好火焰稳定性的低NOx排放的有前途的方法。

著录项

  • 作者

    Mustafa Azeman;

  • 作者单位
  • 年度 1994
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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