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The role of dilution level and canonical configuration in the modeling of MILD combustion systems with internal recirculation

机译:稀释水平和规范配置在带有内部再循环的MILD燃烧系统建模中的作用

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MILD combustion regime emerged as one of the most promising technology to ensure low pollutant emissions and large fuel flexibility.Large-scale use of such technology requires important developments of its numerical modelling. The difficulty of this task lies in the recirculation of mass and heat that results in coupling chemistry and turbulence phenomena.In this work, the effect of the internal exhaust gas recirculation on the performances of a tabulated chemistry model was investigated by carrying out an experimental and numerical study on a cyclonic burner. FGM (Flamelet Generated Manifold) model was adopted. It makes two main assumptions: a turbulent flame can be considered as an ensemble of 1D laminar flames (Flamelets), and the space of compositions can be represented by a lower-dimensional manifold by defining few controlling variables. In this work, two different 1D flame configurations and two controlling variables (a mixture fraction and a progress variable) were used. The comparisons between model and experiments were reported for different dilution conditions at inlet and two diluent species.Results showed that the role of the internal EGR is crucial in the establishment of MILD regimes. In fact, for air conditions the model is not able to predict the low and more distributed reactivity of the system. On the other hand, inlet diluted conditions show a good agreement with the experiments due to burned product effects. CO2-dilution instead of N-2, improves the model results due to the lower reaction rates. Finally, the Flamelet configuration does not strongly affect the simulation results.
机译:MILD燃烧方式已成为确保低污染物排放和大燃料灵活性的最有前途的技术之一,大规模使用此类技术需要对其数值模型进行重要的开发。这项工作的困难在于质量和热量的再循环,从而导致化学反应和湍流现象耦合。在这项工作中,通过进行实验和研究,研究了内部废气再循环对列表化学模型性能的影响。旋风燃烧器的数值研究。采用了FGM(Flamelet产生的歧管)模型。它有两个主要假设:湍流火焰可以看作是一维层流火焰(Flamelets)的集合,合成物的空间可以通过定义较少的控制变量来用低维流形表示。在这项工作中,使用了两个不同的一维火焰配置和两个控制变量(混合分数和进度变量)。在进样口和两种稀释剂的不同稀释条件下,进行了模型和实验的比较。结果表明,内部EGR的作用对于建立MILD方案至关重要。实际上,对于空气条件,该模型无法预测系统的低反应性和分布性。另一方面,由于燃烧产物的影响,进样口的稀释条件与实验显示出很好的一致性。由于较低的反应速率,用CO2稀释代替N-2可以改善模型结果。最后,Flamelet配置不会严重影响仿真结果。

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