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Applicability of Large Eddy Simulation to the Fluid Mechanics in a Real Engine Configuration by Means of an Industrial Code

机译:通过工业代码对实际发动机配置中的大涡模拟对流体力学的适用性

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3D simulations of internal combustion engines are usually based on statistical approaches (RANS) that may not allow predicting cycle-to-cycle variations (CCV) or transient speeds because part of this information is lost by the averaging procedure. To simulate such phenomena, it requires time-resolved approaches. Therefore, large eddy simulation (LES), which only involves a spatial averaging, appears to be a very promising tool. An LES approach is applied to simulate the flow field inside one cylinder taken from a real four-valve diesel engine mounted on an experimental particle image velocimetry (PIV) bench. Preliminary tests are carried out to evaluate the industrial code capabilities. A multicycle calculation is computed in cold flow, in order to evaluate its ability to simulate cycle-to-cycle variations (CCV). A compromise is looked for between robustness of the simulation, industrially conceivable time computation of the calculation and precision requirement of such modelling methods. Some keys are given to validate the results obtained, with the use of characteristic quantities and statistic tools. The code used is Star-CD. Simulations are achieved with a standard Smagorinsky model. The mesh at the bottom dead center contains 1 million cells. Ten consecutive cycles are studied. Comparisons between LES simulations, RANS simulations and experimental results (PIV) are presented. The bench and the PIV results originate from a study by Deslandes.
机译:内燃机的3D仿真通常基于统计方法(RAN),其可能不允许预测周期到循环变化(CCV)或瞬态速度,因为该信息的一部分被平均过程丢失。为了模拟这种现象,它需要时间解决的方法。因此,大型涡流仿真(LES)仅涉及空间平均,似乎是一个非常有前景的工具。应用LES方法来模拟从安装在实验颗粒图像速度(PIV)工作台上的真实四瓣柴油发动机中的一个圆柱内的流场。进行初步测试以评估工业代码能力。多运行计算在冷流中计算,以评估其模拟循环到循环变化(CCV)的能力。寻找妥协,在仿真的稳健性之间,工业上可想时间计算这种建模方法的计算和精确要求。通过使用特征量和统计工具,给出了一些键来验证所获得的结果。使用的代码是Star-CD。用标准的Smagorinsky模型实现模拟。底部死中心的网格包含100万个细胞。研究了十个连续的周期。提出了LES模拟,RAN模拟与实验结果(PIV)之间的比较。替补席和PIV结果源于淡淡的研究。

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