IN-CYLINDER FLOW CHARACTERIZATION USING VORTICITY BASED PARAMETERS

Petr Hatschbach, O. Vitek, R. Tichánek
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Abstract

The paper deals with intake swirling flow characterization in the cylinder of IC engine. The commonly used method based on the swirl resp. tumble number from angular momentum flux evaluation does not need to give the appropriate values in some cases. Typically, in the case of two intake ports, a counter-rotating swirl vortex pair is presented. However their summary angular momentum flux is zero a thus corresponding swirl number is zero too. In order to correctly quantify these cases, it is proposed to evaluate so called vorticity numbers, i.e. dimensionless numbers based on vorticity evaluation. Concrete results are evaluated from data obtained using 3-D CFD simulation in AVL FIRE code. Comparison of variously defined vorticity numbers with each other and with the vortex numbers is performed. A practical way of calculating the vorticity numbers was also suggested with regard to possible adverse effects of the velocity gradients at the cylinder wall.
基于涡度参数的缸内流动表征
本文研究了内燃机气缸内进气旋流特性。常用的方法是基于涡流响应。在某些情况下,由角动量通量计算的翻滚数不需要给出适当的值。典型地,在两个进气口的情况下,出现一个反向旋转的旋涡对。然而它们的总角动量通量为零,因此相应的旋流数也为零。为了正确地量化这些情况,提出了基于涡度评价的所谓涡度数,即无因次数的评价。根据AVL FIRE规范中三维CFD模拟得到的数据对具体结果进行了评价。将不同定义的涡度数相互比较,并与涡数进行比较。文中还提出了一种实用的计算涡度数的方法,考虑了缸壁速度梯度可能产生的不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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