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首页> 外文期刊>Progress in computational fluid dynamics >Large eddy simulation of a confined jet diffusion flame using a finite difference method
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Large eddy simulation of a confined jet diffusion flame using a finite difference method

机译:有限差分法对密闭射流扩散火焰的大涡模拟

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The aim of this work is the development of a low cost numerical technique for confined jet diffusion flames. A convenient formulation based on the mixture fraction for fluid flow and on flamelet models combined with the presumed probability density function for the chemistry is chosen. Numerical tests, for the governing equations discretised by the finite difference explicit Runge-Kutta multistage scheme, were carried out for turbulent, nonpremixed, nonreacting propane-jet flow and for Sandia D flame for reasonable values of gaseous hydrocarbon chemistry. The developed methodology, based on the low Mach number formulation, allows to decrease considerably the time needed to obtain reasonable results for a confined jet diffusion flame.
机译:这项工作的目的是开发一种用于受限射流扩散火焰的低成本数值技术。根据流体流动的混合物分数和小火焰模型,再结合化学物质的假定概率密度函数,选择一种方便的公式。针对湍流,未预混合,未反应的丙烷喷射流以及针对Sandia D火焰的合理气态碳氢化合物化学性质,对有限差分显式Runge-Kutta多阶段方案离散的控制方程进行了数值测试。基于低马赫数公式的已开发方法论,可以大大减少获得有限射流扩散火焰合理结果所需的时间。

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