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首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >Parallel unstructured-grid finite-volume method for turbulent nonpremixed flames using the flamelet model
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Parallel unstructured-grid finite-volume method for turbulent nonpremixed flames using the flamelet model

机译:使用小火焰模型求解非预混湍流的并行非结构化网格有限体积方法

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A parallel unstructured-grid finite-volume method has been developed to accurately and effectively handle physically and geometrically complex turbulent reacting flows. The parallel algorithm has been implemented to improve the computational efficiency of the unstructured-grid flow solver. The strong density - pressure - velocity coupling at all speeds is handled by the multiple pressure-correction method. In dealing with the turbulent non-premixed flame fields, the turbulence - chemistry interaction is represented by the laminar flamelet model, which could be the optimum choice between accuracy and economy. Numerical results indicate that the present approach reasonably well predicts the overall features of the three-dimensional turbulent nonpremixed flame. However, there exist noticeable deviations between prediction and measurement. Based on numerical results of turbulent reacting flows, detailed discussions is given about the prediction capabilities and limitations or defects of the present numerical and physical models. [References: 33]
机译:已经开发出一种并行的非结构化网格有限体积方法,以准确有效地处理物理和几何形状复杂的湍流反应流。已实施并行算法以提高非结构化网格流求解器的计算效率。通过多重压力校正方法可以处理所有速度下的强密度-压力-速度耦合。在处理湍流非预混火焰场时,层流小火焰模型代表了湍流-化学相互作用,这可能是精度和经济性之间的最佳选择。数值结果表明,本方法合理地预测了三维湍流非预混火焰的整体特征。但是,预测和测量之间存在明显的偏差。基于湍流反应流的数值结果,对当前数值和物理模型的预测能力以及局限性或缺陷进行了详细讨论。 [参考:33]

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