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Large Eddy Simulation of Turbulent Reacting Mixing of Liquids in a Coaxial Jet Mixer

机译:同轴射流混合器中液体湍流反应混合的大涡模拟

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摘要

Large eddy simulation is used to investigate passive and reactive scalar mixing at high Reynolds Re and Schmidt Sc numbers in order to prove capability of the LES-SGS micromixing approaches based on the eddy dissipation and DQMOM-IEM models properly simulating liquid reacting flows. Simulations were performed for a fast neutralization reaction in a confined jet reactor The mean profiles for passive scalar agree well with measurements. It was shown that the most contribution to the scalar variance is made by large scale motions whereas the contribution of fine scales smaller than typical inertial range scales is negligible. Thus, the existing LES models are capable of predicting the scalar variance at large Sc numbers. The results obtained for reactive transport revealed discrepancies in the determination of micromixing rate and product concentration. A special study was performed to investigate the dynamics of fine structures using locally refined box embedded into global grid. Typical statistical properties of fine structures were reproduced numerically.
机译:为了验证基于涡流消散和DQMOM-IEM模型正确模拟液体反应流的LES-SGS微混合方法的能力,使用大涡模拟来研究高雷诺数Re和Schmidt Sc值下的被动和反应性标量混合。在密闭射流反应器中进行了快速中和反应的模拟。无源标量的平均分布与测量值非常吻合。结果表明,对标量方差的最大贡献是大尺度运动,而小于典型惯性范围尺度的精细尺度的贡献可以忽略不计。因此,现有的LES模型能够预测大Sc数下的标量方差。反应性运输获得的结果表明,微混合速率和产物浓度的测定存在差异。进行了一项特殊的研究,以使用嵌入到全局网格中的局部精炼盒来研究精细结构的动力学。精细地再现了精细结构的典型统计特性。

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