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NUMERICAL STUDIES ON THE IMPACT OF EQUIVALENCE RATIO OSCILLATIONS ON LEAN PREMIXED FLAME CHARACTERISTICS AND EMISSIONS

机译:等效比振荡对贫燃混合气特性和排放影响的数值研究

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Laminar and turbulent one-dimensional lean premixed methane-air flames subject to equivalence ratio oscillations are investigated numerically. For the turbulent simulations, the Linear Eddy Model is employed. Harmonic perturbations at various frequencies and with various amplitudes are considered and their influence on CO and NO emissions, heat release rate fluctuations, and burning velocity is evaluated. The results indicate a strongly nonlinear behavior of the flame response for high forcing amplitudes attributed to nonlinear effects due to the interaction of burning velocity and equivalence ratio oscillations leading to nonsi-nusoidal oscillations at the flame front. Furthermore, the turbulent cases reveal decreasing mean burning velocities and heat release rates with increasing amplitudes due to damping of turbulent fluctuations induced by the oscillations.
机译:数值研究了层流和湍流的一维稀薄预混合甲烷-空气火焰,它们受到当量比振荡的影响。对于湍流模拟,采用线性涡流模型。考虑了在各种频率和各种振幅下的谐波扰动,并评估了它们对CO和NO排放,放热率波动和燃烧速度的影响。结果表明,由于燃烧速度和当量比振荡的相互作用导致火焰前沿的非正弦振荡,火焰响应的强非线性行为归因于非线性效应,归因于非线性作用。此外,在湍流情况下,由于振荡引起的湍流波动的衰减,平均燃烧速度和放热率随着振幅的增加而降低。

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