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THERMAL/TURBULENCE TIME SCALE RATIOS IN LOW EXOTHERMIC REACTING AND NON-REACTING FLOWS

机译:低放热和非增量流中的热/湍流时间尺度比

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The aim of this work is to contribute to the study of chemistry effects on the turbulent scalar field that is, here, the temperature, through a better knowledge of the ratio between the scalar time scale and the mechanical time scale (R_t) in the distributed reaction regime characterized by a Damkoehler number lower than unity. The numerical studies are performed by calculating the order of magnitude of R_t in both low exothermic reacting and non-reacting case. Propane has been chosen as a typical hydrocarbon for this study. The molar fractions are computed by the IEM (Interaction Exchange with the Mean) model in which the probability density function is calculated from its transport equation. The models and the numerical simulations are used to describe a jet stirred reactor with subsonic jet injection. The predictions are validated by comparison with experimental data for temperature and concentrations fields. It is pointed that in the non-reacting case, R_t parameter is around unity; the temporal scales dynamics and scalar are coupled. In this case, the transport of the passive scalar is ensured by the dynamic field. In the reactive case, however, this coupling is not assured any more. Indeed, the chemical reaction, characterized by a non-linear source term, affects the scalar field by decreasing its characteristic scales, which results in R, lower than unity. The CFD-PDF predictions were within engineering accuracy of experimental data. It can he summarized that the results of exercise are satisfactory, and the CPU-time and RA M memory savings encouraging.
机译:这项工作的目的是通过更好地了解分布中标量时间标度与机械时间标度(R_t)之比来促进对湍流标量场(此处为温度)的化学作用的研究。反应体系,其Damkoehler数小于1。通过计算低放热反应和非反应情况下R_t的数量级来进行数值研究。丙烷已被选为该研究的典型碳氢化合物。摩尔分数是通过IEM(与均值的交互作用)模型计算的,其中概率密度函数是根据其迁移方程计算的。该模型和数值模拟用于描述具有亚音速喷射注入的喷射搅拌反应器。通过与温度和浓度场的实验数据进行比较来验证预测结果。要指出的是,在非反应情况下,R_t参数大约为1。时间尺度动力学和标量是耦合的。在这种情况下,动态标量确保了无源标量的传输。但是,在无功情况下,这种耦合不再得到保证。实际上,以非线性源项为特征的化学反应会通过减小其特征尺度来影响标量场,从而导致R小于一。 CFD-PDF预测在实验数据的工程精度范围内。可以得出结论,锻炼的结果令人满意,并且节省了CPU时间和RA M内存。

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