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Guide vane swirl and tumble device to improve in-cylinder air flow of CI engine using vegetable oil

机译:导向叶片旋流和滚动装置,以利用植物油改进CI发动机的缸内空气流量

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A guide vane swirl and tumble device (GVSTD) can be used in compression ignition (CI) engines running onvegetable oils to generate better in-cylinder air flow characteristics to improve combustion efficiency. In this paper, IC engine simulations were performed to determine the effect of GVSTD on the air flow using 3D computational fluid dynamics (CFD) software. The effects of various vane heights by means of parametric optimization were investigated. The results of average in-cylinder pressure, turbulent kinetic energy (TKE) and velocity were analyzed before the optimum vane height to the pre-set values of vane angle, number and length were decided. Interestingly, the highest vane height failed to improve all the analyzed parameters. At a GVSTD vane height of 0.2 times the intake runner radius, the average in-cylinder pressure, TKE and velocity were found better than with other settings.
机译:导向叶片旋流和翻滚装置(GVSTD)可用于运行开花油的压缩点火(CI)发动机,以产生更好的缸内气流特性以提高燃烧效率。在本文中,进行IC发动机模拟以确定GVSTD在使用3D计算流体动力学(CFD)软件对空气流量的影响。研究了各种叶片高度借助参数优化的影响。在最佳叶片高度到预定值的叶片角度,数量和长度之前,分析了平均气缸压力,湍流动能(TKE)和速度的结果。有趣的是,最高叶片高度未能改善所有分析的参数。在进气旋流器半径的0.2倍的GVSTD叶片高度下,比其他设置更好地发现平均缸压,TKE和速度。

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