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Direct numerical simulations of a high Karlovitz number laboratory premixed jet flame - an analysis of flame stretch and flame thickening

机译:高卡洛维茨数字实验室预混喷射火焰的直接数值模拟 - 火焰拉伸和火焰增厚分析

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This article reports an analysis of the first detailed chemistry direct numerical simulation (DNS) of a high Karlovitz number laboratory premixed flame. The DNS results are first compared with those from laser-based diagnostics with good agreement. The subsequent analysis focuses on a detailed investigation of the flame area, its local thickness and their rates of change in isosurface following reference frames, quantities that are intimately connected. The net flame stretch is demonstrated to be a small residual of large competing terms: the positive tangential strain term and the negative curvature stretch term. The latter is found to be driven by flame speed-curvature correlations and dominated in net by low probability highly curved regions. Flame thickening is demonstrated to be substantial on average, while local regions of flame thinning are also observed. The rate of change of the flame thickness (as measured by the scalar gradient magnitude) is demonstrated, analogously to flame stretch, to be a competition between straining tending to increase gradients and flame speed variations in the normal direction tending to decrease them. The flame stretch and flame thickness analyses are connected by the observation that high positive tangential strain rate regions generally correspond with low curvature regions; these regions tend to be positively stretched in net and are relatively thinner compared with other regions. High curvature magnitude regions (both positive and negative) generally correspond with lower tangential strain; these regions are in net negatively stretched and thickened substantially.
机译:本文报告了对高Karlovitz数字实验室预混火焰的第一个详细化学直接数值模拟(DNS)的分析。首先将DNS结果与来自基于激光的诊断的诊断相提并为良好的协议。随后的分析侧重于对火焰区域的详细研究,其局部厚度及其在基准框架之后的异形件的变化率,密切连接的数量。净火焰延伸被证明是较小的竞争项的剩余部分:正切向应变项和负曲率延伸项。被发现后者被火焰速度曲率相关的驱动,并通过低概率高弯曲区域在网中支配。对火焰增厚进行说明是平均值的,而也观察到火焰变薄的局部区域。对火焰厚度的变化率(按标量梯度幅度测量)被证明,类似于火焰伸展,是倾向于增加梯度和正常方向上的火焰速度变化之间的竞争,以减小它们。火焰拉伸和火焰厚度分析通过观察到的观察到,高正切线应变速率区域通常与低曲率区域对应;这些区域往往被净延伸,与其他地区相比相对较薄。高曲率幅度区(正极和负)通常与下切株相对应;这些区域在净延伸并基本上加厚。

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