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LES-BASED STUDY OF THE INFLUENCE OF THERMAL BOUNDARY CONDITION AND COMBUSTOR CONFINEMENT ON PREMIX FLAME TRANSFER FUNCTIONS

机译:基于边界的热边界条件和燃烧室约束对预混合火焰传递函数影响的研究

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The influence of thermal boundary condition at the combus-tor wall and combustor confinement on the dynamic flame response of a perfectly premixed axial swirl burner is investigated. Large Eddy Simulations are carried out using the Dynamically Thickened Flame combustion model. Then, system identification methods are used to determine the flame transfer function (FTF) from the computed time series data. Two configurations are compared against a reference case with 90 mm × 90 mm combustor cross section and nonadiabatic walls: 1) combustor cross section similar to the reference case with adiabatic combustor walls, and 2) different confinement (160 mm × 760 mm) with nonadiabatic walls. It is found that combustor confinement and thermal boundary conditions have a noticeable influence on the flame response due to differences in flame shape and flow field. In particular the FTF computed with adiabatic wall boundary condition, which produces aflame with significant heat release in both shear layers, differs significantly from the FTF with nonadiabatic walls, where the flame stabilizes only in the inner shear layer. The observed differences in flow field and flame shape are discussed in relation to the unit impulse response of the flame. The impact of the differences in FTF on stability limits is analyzed with a low-order thermoacoustic model.
机译:研究了燃烧器-燃烧器壁处的热边界条件和燃烧器的限制对完全预混轴向涡流燃烧器的动态火焰响应的影响。使用动态增厚火焰燃烧模型进行大型涡流模拟。然后,使用系统识别方法从计算出的时间序列数据中确定火焰传递函数(FTF)。将两种配置与具有90 mm×90 mm燃烧室横截面和非绝热壁的参考案例进行了比较:1)燃烧室横截面类似于具有绝热燃烧室壁的参考案例,以及2)具有非绝热结构的不同限制(160 mm×760 mm)墙壁。发现由于火焰形状和流场的差异,燃烧室的限制和热边界条件对火焰响应有显着影响。特别是,在绝热壁边界条件下计算的FTF会在两个剪切层中产生带有大量热量释放的火焰,与非绝热壁的FTF显着不同,后者的火焰仅在内部剪切层中稳定。讨论了与火焰的单位脉冲响应有关的流场和火焰形状的观察到的差异。使用低阶热声模型分析了FTF差异对稳定性极限的影响。

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