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Dissipation element analysis of a turbulent non-premixed jet flame

机译:湍流非预混喷射火焰的耗散元素分析

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The objective of the present work is to examine the interaction between turbulent mixing and chemistry by employing the method of dissipation elements in a non-premixed turbulent jet flame. The method of dissipation elements [L. Wang and N. Peters, J. Fluid Mech. 554, 457-475 (2006)] is used to perform a space-filling decomposition of the turbulent jet flow into different regimes conditioned on their location with respect to the reaction zone. Based on the non-local structure of dissipation elements, this decomposition allows us to discern whether points away from stoichiometry are connected through a diffusive layer with the reaction zone. In a next step, a regime based statistical analysis of dissipation elements is carried out by means of data obtained from a direct numerical simulation. Turbulent mixing and chemical reactions depend strongly on the mixture fraction gradient. From a budget between strain and dissipation, the mechanism for the formation and destruction of mean gradients along dissipation elements is inspected. This budget reveals that large gradients in the mixture fraction field occur at a small but finite length scale. Finally, the inner structure of dissipation elements is examined by computing statistics along gradient trajectories of the mixture fraction field. Thereby, the method of dissipation elements provides a statistical characterization of flamelets and novel insight into the interaction between chemistry and turbulence. Published by AIP Publishing.
机译:本作作品的目的是通过采用未预热的湍流喷射火焰中的散热元件方法来检查湍流混合和化学之间的相互作用。耗散元素的方法[L.王和N.彼得斯,J. Fluid Mech。 554,457-475(2006)]用于对湍流喷射流的空间填充分解成相对于反应区的不同制度。基于耗散元件的非局部结构,该分解允许我们辨别远离化学计量的点是否通过与反应区的漫射层连接。在下一步骤中,通过从直接数值模拟获得的数据进行耗散元素的基于结果的统计分析。湍流的混合和化学反应强烈依赖于混合级分梯度。从应变和耗散之间的预算中,检查了沿耗散元素的平均梯度形成和破坏的机制。该预算显示混合级分区域中的大梯度以小但有限的长度尺度发生。最后,通过沿混合分数场的梯度轨迹计算统计来检查耗散元件的内部结构。由此,耗散元件的方法提供了火焰状和新颖的洞察化学和湍流之间的相互作用的统计表征。通过AIP发布发布。

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