Numerical Analysis of the Reaction Process in a Plane Shear Layer

T. Hasegawa, S. Yamaguchi, N. Ohiwa
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Abstract

The unsteady reaction process in an incompressible plane shear layer was numerically simulated by using the discrete vortex method combined with the third-order upwind finite difference method. The average product concentration increased and the thickness of the reaction zone decreased as the Damkohler number increased. The distribution profiles of the average concentrations and the fluctuation intensities showed similarities. The two-dimensional large eddy motion produced the stepwise shape of the average concentrations and the two-peak profiles of the fluctuation intensities. The asymmetrical entrainment of the highspeed fluid in a plane shear layer resulted in variations in the reaction rate and in the product thickness, as the stoichiometric ratio was changed.
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平面剪切层内反应过程的数值分析
采用离散涡法结合三阶迎风有限差分法对不可压缩平面剪切层中的非定常反应过程进行了数值模拟。随着Damkohler数的增加,平均产物浓度增加,反应区厚度减小。平均浓度和波动强度的分布曲线具有相似性。二维大涡运动产生了平均浓度的阶梯式分布和波动强度的双峰分布。随着化学计量比的改变,高速流体在平面剪切层中的不对称夹带导致了反应速率和产物厚度的变化。
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