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Effect of turbulent motions at different length scales on turbulent premixed swirl-stabilised flame topology

机译:湍流在不同长度尺度上对湍流预混合涡旋稳定火焰拓扑的影响

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Three-dimensional direct numerical simulation data of H-2-air turbulent swirling premixed combustion at two different swirl numbers are analysed to investigate the local reaction zone morphology and its relation with local turbulent motions at different length scales. The effect of small scale turbulent mixing on local flames is investigated, and the results have shown that the contribution of microscale turbulent diffusivity on the local flamelet is insignificant, although there is some evidence of flame thinning for the higher swirl number case. The flame morphology such as high-level convolution and interacting flames, on the other hand, shows greater influence on local flamelets, suggesting the importance of local reaction zone topology on overall combustion processes. The local reaction zones are analysed by using the shapefinders to quantify their topology. Although the shapefinders showed various local reaction zone shapes consisting of "pancakes" and "tubes" and intermissive intense reaction zone distributions, the smallest characteristic length scale shows that the local reaction zones are thin. Finally, the relationship between these local reaction zone topology and turbulent motions at different sizes were discussed. The local reaction zone topology has a direct relation with Taylor microscale, integral length scale and their associated velocity scale, whereas almost no correlation is observed with Kolmogorov length scale, in the presence of inhomogeneous turbulence and strong mean shears. The present results suggest the importance of Taylor microscale on flame surface topology, which is often understated in turbulent combustion modelling frameworks. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:分析了两个不同旋流数的H-2-空气湍流回旋预混燃烧的三维直接数值模拟数据,研究了不同长度尺度下的局部反应区形态及其与局部湍流的关系。研究了小规模湍流混合对局部火焰的影响,结果表明,尽管有一些证据表明在较高旋流数情况下火焰变稀,但微观湍流扩散率对局部火焰的贡献不明显。另一方面,诸如高水平旋涡和相互作用的火焰之类的火焰形态对局部小火焰显示出更大的影响,表明局部反应区拓扑对整个燃烧过程的重要性。通过使用寻形仪分析局部反应区以量化其拓扑。尽管寻形仪显示出由“薄煎饼”和“管子”组成的各种局部反应区形状和间断的强烈反应区分布,但最小的特征长度尺度表明局部反应区很薄。最后,讨论了这些局部反应区拓扑结构与不同大小的湍流运动之间的关系。局部反应区拓扑与泰勒微尺度,积分长度尺度及其相关的速度尺度有直接关系,而在不均匀湍流和强平均剪切的情况下,与科尔莫戈罗夫长度尺度几乎没有相关性。目前的结果表明,泰勒微尺度在火焰表面拓扑上的重要性,在湍流燃烧建模框架中常常低估了这一点。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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