首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Effect of Subgrid Modeling on the In-Cylinder Unsteady Mixing Process in a Direct Injection Engine
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Effect of Subgrid Modeling on the In-Cylinder Unsteady Mixing Process in a Direct Injection Engine

机译:子网格建模对直喷发动机缸内非定常混合过程的影响

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摘要

Fuel-air mixing in a direct injection spark ignition (DISI) engine occurs in a highly unsteady, turbulent and three-dimensional flow. As a result, any cycle-to-cycle unsteady variation in the mixing process can directly impact the performance of the DISI engine. To study the unsteady process in these engines, we have developed and implemented a large-eddy simulation (LES) approach with an innovative subgrid scalar mixing model based on the linear-eddy mixing (LEM) model into a commercial IC engine code (KIVA-3V). Time-averaged results of the simulations using the new LES version (KIVALES) are compared to the steady-state predictions of the original KIVA-3V. Significantly different in-cylinder turbulent fuel-air mixing is predicted by these two methods. Analysis shows that KIVALES resolves spatial features larger than the grid and that the subgrid kinetic energy adjusts to the LES resolution. As a result, KIVALES captures a highly unsteady, anisotropic fuel-air mixing process whereas a more diffused mixed field is predicted by the original KIVA-3V. This ability of KIVALES is attributed to the subgrid closure which scales the subgrid dissipation with the local grid size and thus, decreases the overall dissipation in the flow.
机译:直喷式火花点火(DISI)发动机中的燃料-空气混合以高度不稳定,湍流和三维流动的形式发生。结果,混合过程中任何周期间的不稳定变化都会直接影响DISI发动机的性能。为了研究这些发动机的不稳定过程,我们开发并实施了大涡模拟(LES)方法,该方法采用了基于线性涡混合(LEM)模型的创新性亚网格标量混合模型,并将其转化为商用IC发动机代码(KIVA- 3V)。使用新的LES版本(KIVALES)进行仿真的时间平均结果与原始KIVA-3V的稳态预测值进行了比较。通过这两种方法可以预测缸内湍流燃料-空气混合的显着不同。分析表明,KIVALES可以解析比网格更大的空间特征,并且子网格动能会调整为LES分辨率。结果,KIVALES捕获了高度不稳定的各向异性燃料-空气混合过程,而原始KIVA-3V则预测了更扩散的混合场。 KIVALES的这种能力归因于子网格闭合,该闭合可根据局部网格大小来缩放子网格耗散,从而减少流中的总体耗散。

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