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Experimental investigations and numerical simulations of methane cup-burner flame

机译:甲烷杯式燃烧器火焰的实验研究和数值模拟

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Pulsation frequency of the cup-burner flame was determined by means of experimental investigations and numerical simulations. Simplified chemical kinetics was successfully implemented into a laminar fluid flow model applied to the complex burner geometry. Our methodical approach is based on the monitoring of flame emission, fast Fourier transformation and reproduction of measured spectral features by numerical simulations. Qualitative agreement between experimental and predicted oscillatory behaviour was obtained by employing a two-step methane oxidation scheme.
机译:通过实验研究和数值模拟确定了杯形燃烧器火焰的脉动频率。已将简化的化学动力学成功地应用于层流流体模型,该模型应用于复杂的燃烧器几何形状。我们的方法是基于火焰发射,快速傅立叶变换以及通过数值模拟对测量的光谱特征进行再现的监视。通过采用两步甲烷氧化方案,获得了实验和预测的振荡行为之间的定性一致性。

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