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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Turbulence Anisotropy Investigations in an Internal Combustion Engine
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Turbulence Anisotropy Investigations in an Internal Combustion Engine

机译:内燃机中的湍流各向异性研究

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The assumption of isotropic turbulence is commonly incorporated into models of the internal combustion engine (ICE) in-cylinder flows. While preliminary analysis with two-dimensional (2D) velocity data indicates that the turbulence may tend to isotropy as the piston approaches top-dead-center (TDC), the validity of this assumption has not been fully investigated, partially due to the lack of three-component velocity data in ICEs. In this work, the velocity was measured using two-dimensional, three-component (2D-3C) particle image velocimetry in a single-cylinder, motored, research engine to investigate the evolution of turbulence anisotropy throughout the compression stroke. Invariants of the Reynolds stress anisotropy tensor were calculated and visualized, through the Lumley triangle, to investigate turbulence states. Results showed the turbulence to be mostly ani-sotropic, with preferential tendency toward 2D axisymmetry at the beginning of the compression stroke and approaching-isotropy near top-dead-center. Findings provide new insights into turbulence in dynamic, bounded flows to assist with the development of physics-based, quantitative models.
机译:各向同性湍流的假设通常掺入内燃机(冰)缸内流动的模型中。虽然具有二维(2D)速度数据的初步分析表明湍流可能倾向于当活塞接近顶死中心(TDC)时,但这假设的有效性尚未完全调查,部分原因是由于缺乏冰中的三个分量速度数据。在这项工作中,使用二维的三组分(2D-3C)粒子图像测速器在单缸,电动的研究发动机中测量速度,以研究整个压缩冲程的湍流各向异性的演变。通过Lumley三角形计算和可视化雷诺应力各向异性张量的不变性,以调查湍流状态。结果表明,大多是Ani-sotropic的湍流,优先倾向于在压缩冲程开始时的2D轴对称倾向,并在顶死中心附近接近各向同性。调查结果在动态的有界流中的湍流中提供了新的洞察力,以帮助开发基于物理的定量模型。

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