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A priori evaluation of subgrid-scale combustion models for diesel engine applications

机译:柴油机应用亚网格规模燃烧模型的先验评估

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Large Eddy Simulation (LES) is being increasingly used for turbulent reacting flows in diesel engines. The accuracy of LES depends strongly on the accuracy of the subgrid-scale models, which are employed. In this study, two-dimensional DNS of autoigniting turbulent mixing layers are performed at temperature and pressure conditions similar to those observed in diesel engines. The DNS results are used to evaluate the performance of two common subgrid-scale combustion models that are employed in diesel combustion modeling - the perfectly stirred reactor (PSR) model and the unsteady flamelet progress variable (UFPV) model. It is shown that the effect of turbulence on the reaction zone is not felt during the early ignition stage, and in this stage, the PSR model performance is superior to that of the UFPV model. For a laminar mixing layer, which evolves under the influence of turbulence into a turbulent mixing layer, the PSR model performance deteriorates drastically with increasing time, and the UFPV model is shown to be a more suitable subgrid-scale model. The choice of the subgrid-scale combustion model is also shown to strongly depend on the filter size, i.e. the LES grid size. For filter sizes smaller than the mixing layer thickness, the PSR model performs reasonably well whereas the UFPV model outperforms the PSR model for larger filter sizes. (C) 2015 Elsevier Ltd. All rights reserved.
机译:大型涡流模拟(LES)越来越多地用于柴油发动机中的湍流反应流。 LES的准确性在很大程度上取决于所使用的子网格规模模型的准确性。在这项研究中,在类似于柴油机中观察到的温度和压力条件下执行自动点火湍流混合层的二维DNS。 DNS结果用于评估在柴油燃烧模型中使用的两个常见的亚网格规模燃烧模型的性能-完美搅拌反应堆(PSR)模型和非稳态小火焰进展变量(UFPV)模型。结果表明,在点火初期,没有感觉到湍流对反应区的影响,在这一阶段,PSR模型的性能优于UFPV模型。对于在湍流的影响下演变成湍流混合层的层状混合层,PSR模型的性能会随着时间的增加而急剧下降,并且UFPV模型显示为更合适的亚网格规模模型。还显示了亚网格规模燃烧模型的选择在很大程度上取决于过滤器尺寸,即LES网格尺寸。对于小于混合层厚度的过滤器尺寸,PSR模型的性能相当好,而对于较大的过滤器尺寸,UFPV模型的性能优于PSR模型。 (C)2015 Elsevier Ltd.保留所有权利。

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