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Numerical Study of Premixed laminar Flame Propagation in a Closed Tube with a Full Navier-Stokes Approach

机译:完全Navier-Stokes方法在密闭管中预混合层流火焰传播的数值研究

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This paper describes a numericla study of the dynamics of the propagation of gas flames in enclosures. The proposed modle is based on a primitive-variable, pseudocompressible flow approach, with a projection method to derive an elliptic equation for the peturbation pressure. Finite-rate combustion chemistry is taken into account. The numerical solution of the model equations is conducted by means of a method, developed by the authors, based on an explicit formulation for the time-dependent balance equations, and a direct, band matrix LU sovler for the pressure elliptic equation. The use of high-order upwind schemes makes it possible to keep numerical diffusion to a minimum. The model was applied to the study of the transient develolpment of a laminar methane-air flame in a closed cylinder. Detailed numerical results are presented and analyzed to investigate investigate aspects of flame-flow interactions. Issues addressed include the role of location and shape of the ignition zone, the finleunce of the tube aspect ratio on flame propagation, and the effect of wall friction in the onset of a tulip-shaped flame.
机译:本文描述了封闭空间中气体火焰传播动力学的数值研究。所提出的模型基于原始变量,拟压缩流方法,并采用投影方法来导出石化压力的椭圆方程。考虑了有限速率燃烧化学。模型方程的数值解是通过作者开发的一种方法进行的,该方法基于时变平衡方程的显式公式,以及压力椭圆方程的直接带矩阵LU sovler。使用高阶迎风方案可以将数值扩散保持在最低水平。该模型被用于研究层状甲烷-空气火焰在封闭气缸中的瞬态发展。提出并分析了详细的数值结果,以调查火焰流相互作用的各个方面。解决的问题包括点火区的位置和形状,管长宽比的变化对火焰传播的影响以及郁金香形火焰发作时壁摩擦的影响。

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