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首页> 外文期刊>Open Journal of Fluid Dynamics >Consideration on the Flow Velocity in the Experimental Analysis of the Flame Displacement Speed Using DNS Data of Turbulent Premixed Flames with Different Lewis Numbers
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Consideration on the Flow Velocity in the Experimental Analysis of the Flame Displacement Speed Using DNS Data of Turbulent Premixed Flames with Different Lewis Numbers

机译:在使用不同Lewis数的湍流预混火焰的DNS数据进行火焰位移速度实验分析中对流速的考虑

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摘要

The flame displacement speed is one of the major characteristics in turbulent premixed flames. The flame displacement speed is experimentally obtained from the displacement normal to the flame surface, while it is numerically evaluated by the transport equation of the flame surface. The flame displacement speeds obtained both experimentally and numerically cannot be compared directly because their definitions are different. In this study, two kinds of experimental flame displacement speeds—involving the mean inflow velocity and the local flow velocity—were simulated using the DNS data with the different Lewis numbers, and were compared with the numerical flame displacement speed. The simulated experimental flame displacement speed involving the mean inflow velocity had no correlation with the numerical flame displacement speed, while the simulated displacement speed involving the local flow velocity had a clear correlation with the numerical displacement speed in the cases of higher Lewis number than unity. The correlation coefficient of the simulated displacement speed involving the local flow velocity with the numerical displacement speed had a maximum value on the isosurface of the reaction progress variable with the maximum temperature gradient where the dilation effect of the flame is strongest.
机译:火焰位移速度是湍流预混火焰的主要特征之一。通过从垂直于火焰表面的位移实验获得火焰位移速度,同时通过火焰表面的传输方程对其进行数值评估。由于其定义不同,因此无法直接比较通过实验和数值获得的火焰位移速度。在这项研究中,使用具有不同Lewis数的DNS数据模拟了两种实验火焰位移速度(分别涉及平均流入速度和局部流速),并将其与数值火焰位移速度进行了比较。 Lewis数大于1的情况下,包含平均流入速度的模拟实验火焰位移速度与数值火焰位移速度不相关,而涉及局部流速的模拟实验速度与数值位移速度则具有明显的相关性。包含局部流速的数值模拟位移速度与数值位移速度的相关系数在最大火焰梯度效应最强的温度梯度最大的反应过程变量的等值面上具有最大值。

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