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The Effect of Partial Premixing and Heat Loss on the Reacting Flow Field Prediction of a Swirl Stabilized Gas Turbine Model Combustor

机译:部分预混合和热损失对旋流稳定型燃气轮机模型燃烧器反应流场预测的影响

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摘要

This work addresses the prediction of the reacting flow field in a swirl stabilized gas turbine model combustor using large-eddy simulation. The modeling of the combustion chemistry is based on laminar premixed flamelets and the effect of turbulence-chemistry interaction is considered by a presumed shape probability density function. The prediction capabilities of the presented combustion model for perfectly premixed and partially premixed conditions are demonstrated. The effect of partial premixing for the prediction of the reacting flow field is assessed by comparison of a perfectly premixed and partially premixed simulation. Even though significant mixture fraction fluctuations are observed, only small impact of the non-perfect premixing is found on the flow field and flame dynamics. Subsequently, the effect of heat loss to the walls is assessed assuming perfectly premixing. The adiabatic baseline case is compared to heat loss simulations with adiabatic and non-adiabatic chemistry tabulation. The results highlight the importance of considering the effect of heat loss on the chemical kinetics for an accurate prediction of the flow features. Both heat loss simulations significantly improve the temperature prediction, but the non-adiabatic chemistry tabulation is required to accurately capture the chemical composition in the reacting layers.
机译:这项工作解决了使用大涡模拟对涡旋稳定型燃气轮机模型燃烧室中反应流场的预测问题。燃烧化学模型基于层流预混小火焰,并通过假定的形状概率密度函数来考虑湍流-化学相互作用的影响。演示了所提出的燃烧模型在完全预混合和部分预混合条件下的预测能力。通过比较完全预混合和部分预混合的模拟,可以评估部分预混合对反应流场预测的效果。即使观察到明显的混合物分数波动,也只能发现不完全预混对流场和火焰动力学的影响很小。随后,假设完全预混合,评估了壁的热损失效应。将绝热基线情况与具有绝热和非绝热化学列表的热损失模拟进行比较。结果强调了考虑热量损失对化学动力学的影响对于准确预测流动特征的重要性。两种热损失模拟都显着改善了温度预测,但是需要非绝热化学制表才能准确捕获反应层中的化学成分。

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