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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Large Eddy Simulation of Vaporizing Sprays Considering Multi-Injection Averaging and Grid-Convergent Mesh Resolution
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Large Eddy Simulation of Vaporizing Sprays Considering Multi-Injection Averaging and Grid-Convergent Mesh Resolution

机译:考虑多次注入平均和网格收敛网格分辨率的蒸发喷雾大涡模拟

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摘要

A state-of-the-art spray modeling methodology, recently presented by Senecal et al. (2012, "Grid Convergent Spray Models for Internal Combustion Engine CFD Simulations," Proceedings of the ASME 2012 Internal Combustion Engine Division Fall Technical Conference, Vancouver, Canada, Paper No. ICEF2012-92043; 2013 "An Investigation of Grid Convergence for Spray Simulations using an LES Turbulence Model," Paper No. SAE 2013-01-1083) is applied to large eddy simulations (LES) of vaporizing sprays. Simulations of noncombusting Spray A (n-dodecane fuel) from the engine combustion network are performed. An adaptive mesh refinement (AMR) cell size of 0.0625 mm is utilized based on the accuracy/runtime tradeoff demonstrated by Senecal et al. (2013, "An Investigation of Grid Convergence for Spray Simulations using an LES Turbulence Model," Paper No. SAE 2013-01-1083). In that work, it was shown that grid convergence of key parameters for nonevaporating and evaporating sprays was achieved for cell sizes between 0.0625 and 0.125 mm using the dynamic structure LES model. The current work presents an extended and more thorough investigation of Spray A using multidimensional spray modeling and the dynamic structure LES model. Twenty different realizations are simulated by changing the random number seed used in the spray submodels. Multireali-zation (ensemble) averaging is shown to be necessary when comparing to local spray measurements of quantities such as mixture fraction and gas-phase velocity. Through a detailed analysis, recommendations are made regarding the minimum number of LES realizations required for accurate prediction of diesel sprays. Finally, the effect of a spray primary breakup model constant on the results is assessed.
机译:Senecal等人最近提出了一种最新的喷雾建模方法。 (2012年,“用于内燃机CFD仿真的网格收敛喷雾模型”,ASME 2012内燃机分部秋季技术会议论文集,加拿大温哥华,论文编号ICEF2012-92043; 2013年“用于喷雾仿真的网格收敛研究“使用LES湍流模型”,论文号SAE 2013-01-1083)被应用于气化喷雾的大型涡流模拟(LES)。进行了来自发动机燃烧网络的不燃烧喷雾A(正十二烷燃料)的模拟。基于Senecal等人的准确性/运行时间权衡,采用了0.0625 mm的自适应网格细化(AMR)像元大小。 (2013年,“使用LES湍流模型进行喷雾模拟的网格收敛研究”,论文编号SAE 2013-01-1083)。在该工作中,使用动态结构LES模型显示,对于尺寸在0.0625至0.125 mm之间的像元,实现了非蒸发和蒸发喷雾关键参数的网格收敛。当前的工作提出了使用多维喷雾建模和动态结构LES模型对喷雾A进行的更广泛,更彻底的研究。通过更改喷雾子模型中使用的随机数种子,模拟了二十种不同的实现。当与局部喷雾测量值(例如混合物分数和气相速度)进行比较时,表明必须进行多次均化(集成)平均。通过详细的分析,就准确预测柴油喷雾所需的最小LES实现量提出了建议。最后,评估了喷雾一次分解模型常数对结果的影响。

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