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PREDICTION OF PREMIXED FLAME DYNAMICS USING LES WITH TABULATED CHEMISTRY AND EULERIAN STOCHASTIC FIELDS

机译:使用带节律的化学性和Eulerian随机场的LES预测预混合火焰动力学

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This paper demonstrates that a Large Eddy Simulation (LES) combustion model based on tabulated chemistry and Eu-lerian stochastic fields can successfully describe the flame dynamics of a premixed turbulent swirl flame. The combustion chemistry is tabulated from one-dimensional burner-stabilized flamelet computations in dependence of progress variable and enthalpy. The progress variable allows to efficiently include a detailed reaction scheme, while the dependence on enthalpy describes the effect of heat losses on the reaction rate. The turbulence-chemistry interaction is modeled by eight Eulerian stochastic fields. A LES of a premixed swirl burner with a broadband velocity excitation is performed to investigate the flame dynamics, i. e. the response of heat release rate to upstream velocity perturbations. In particular, the flame impulse response and flame transfer function are identified from LES time series data. Simulation results for a range of power ratings are in good agreement with experimental data.
机译:本文证明,基于列表化学和Eulerian随机场的大涡模拟(LES)燃烧模型可以成功地描述预混湍流旋流火焰的火焰动力学。根据进展变量和焓,从一维燃烧器稳定的小火焰计算中得出燃烧化学物质的表格。进展变量允许有效地包括详细的反应方案,而对焓的依赖性描述了热损失对反应速率的影响。湍流-化学相互作用是由八个欧拉随机场模拟的。进行具有宽带速度激励的预混涡流燃烧器的LES,以研究火焰动力学,即。 e。放热速率对上游速度扰动的响应。特别地,从LES时间序列数据识别出火焰脉冲响应和火焰传递函数。一系列额定功率的仿真结果与实验数据非常吻合。

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