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Multi-scale Coupling for Predictive Injector Simulations

机译:用于预测注射器模拟的多尺度耦合

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Predictive simulations of full fuel injection systems for e.g. diesel engines could be very important for reducing emissions of current engines but are still rare. Beside the numerical issues arising from discontinuities across the liquid-gas-interface, different scales relevant for the nozzle internal flow, primary breakup in the vicinity of the nozzle, and secondary breakup and evaporation further downstream make efficient simulation of the full injection system challenging. This paper introduces a multi-scale coupling approach for overcoming this issue leading to efficient and predictive injector simulations. After a brief description of the numerical methods used in this study, the coupling among nozzle internal flow, primary breakup, and secondary breakup with evaporation is introduced and analyzed with respect to computing efficiency and physical accuracy. Finally, the simulation framework is applied to the "Spray A" case of the Engine Combustion Network.
机译:用于例如全燃料喷射系统的预测模拟。柴油发动机对于减少当前发动机的排放来说非常重要,但仍然很少见。除了在液体 - 气体界面中的不连续性产生的数值问题外,不同的尺度与喷嘴内部流动相关,喷嘴附近的初级分解,以及次要分解和蒸发进一步下游,使得完全注射系统挑战的高效模拟。本文介绍了一种多规模耦合方法,用于克服这一问题,导致有效和预测的注射器模拟。在本研究中使用的数值方法的简要描述之后,引入了喷嘴内部流动,初级分解和蒸发的二次分解之间的耦合,并相对于计算效率和物理精度进行分析。最后,将仿真框架应用于发动机燃烧网络的“喷射”情况。

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