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Pressure-based unstructured-grid finite-volume method for simulating laminar reacting flows

机译:基于压力的非结构网格有限体积模拟层流反应流

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摘要

A pressure-based, unstructured, finite-volume method has been del-eloped to resolve accurately the physically and geometrically complex reacting flows. A pressure-correction algorithm together with a conventional operator-splitting procedure was employed to handle the pressure-velocity coupling and the stiff reaction source terms. The conservative forms of the governing equations are integrated over a cell-centered control volume with collocated storage for all transport variables. Computations using detailed chemistry and variable transport properties were performed for a counterflow hydrogen-air diffusion flame and a lifted methane-air triple flame. Numerical results indicate that the present numerical and physical models are quite capable of predicting the essential features and complex structure of laminar nonpremixed and partially premixed flames in terms of flame location, temperature, mass fraction of species, triple flame structure, and lift-off height. [References: 28]
机译:已开发出一种基于压力的非结构化有限体积方法,可精确地解析物理和几何形状复杂的反应流。压力校正算法与常规的操作员分离程序一起用于处理压力-速度耦合和刚性反应源项。控制方程的保守形式集成在以细胞为中心的控制体积上,并为所有运输变量配置了存储。对于逆流氢气-空气扩散火焰和甲烷-空气三重火焰,使用了详细的化学方法和可变的传输性质进行了计算。数值结果表明,目前的数值和物理模型能够很好地预测层流非预混和部分预混火焰的基本特征和复杂结构,包括火焰位置,温度,物质的质量分数,三重火焰结构和升空高度。 [参考:28]

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