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RANS AND LES OF IC ENGINE FLOWS - A COMPARATIVE STUDY

机译:Rans和IC发动机流动 - 比较研究

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A comparative cold flow analysis between Reynolds-Averaged Navier-Stokes (RANS) and Large Eddy Simulation (LES) cycle-averaged velocity and turbulence predictions is carried out for a single cylinder engine with transparent combustion chamber (TCC) under motored conditions using high-speed Particle Image Velocimetry (PIV) measurements as the reference data. Simulations are done using a commercial CFD code CONVERGE with the implementation of standard k-ε and RNG k-ε turbulent models for RANS and a one-equation eddy viscosity model for LES. The following aspects are analyzed in this study: 1. The effects of computational domain geometry (with or without intake and exhaust plenums) on mean flow and turbulence predictions for both LES and RANS simulations 2. Comparison of LES versus RANS simulations in terms of their capability to predict mean flow and turbulence Both RANS and LES full and partial geometry simulations are able to capture the overall mean flow trends qualitatively; but the intake jet structure, velocity magnitudes, turbulence magnitudes and its distribution are more accurately predicted by full geometry simulations. The guideline therefore for CFD engineers is that RANS partial geometry simulations (computationally least expensive) are good enough for capturing overall qualitative flow trends. However, if one is interested in getting reasonably accurate estimates of velocity magnitudes, flow structures, turbulence magnitudes and its distribution, they must resort to LES simulations. Furthermore, to get the most accurate turbulence distributions, one must consider running LES full geometry simulations.
机译:雷诺平均海军斯托克斯(RANS)和大型涡流仿真(LES)周期平均速度和湍流预测之间的比较冷流分析是在使用高 - 电动条件下具有透明燃烧室(TCC)的单个汽缸发动机进行的单个汽缸发动机进行了透明燃烧室(TCC)的循环平均速度和湍流预测。速度粒子图像VELOCIMETRY(PIV)测量作为参考数据。使用商业CFD码进行仿真随着LES的标准K-ε和RNG k-ε湍流模型的实现,以及LES的单程涡流模型。在本研究中分析了以下几何:1。计算领域几何(有或没有进气和排气能力)对LES和RAN模拟的平均流量和湍流预测的影响2. LES与RANS模拟的比较预测平均流动和湍流的能力既有rans和les全部和部分几何模拟都能够定性地捕获整体平均流动趋势;但是通过全几何模拟更准确地预测进气射流结构,速度幅度,湍流幅度及其分布。因此,对CFD工程师的指南是RAN部分几何模拟(计算最便宜)足以捕获整体定性流动趋势。但是,如果有兴趣获得相当准确的速度大小估计,流量结构,湍流大小及其分布,则必须诉诸LES模拟。此外,为了获得最准确的湍流分布,必须考虑运行LES全几何模拟。

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