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CHARACTERIZATION OF MIXING ENHANCEMENT IN SWIRL-SPRAY INTERACTIONS IN DIESEL ENGINES

机译:柴油机旋流-喷流相互作用中混合增强的表征

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Swirl in diesel engines is known to be an important parameter that affects the mixing of fuel and air, heat release, emissions, and overall engine performance. In this study, a multidimensional model for flows, sprays, and combustion in engines is employed to study the interactions between swirl and the fuel spray in a diesel engine. It is generally believed that swirl enhances mixing in a diesel engine. Previous studies have suggested that there may be an optimal level of swirl at which the mixing in the chamber is maximized for a given set of engine operating conditions. This optimal level may result from a balance between increased jet surface area and utilization of air in the chamber. In this work, those trends are clarified through a detailed evaluation of the velocity flow patterns in the chamber and by relating such patterns to those published in the literature for jets in cross-flow. It is also shown that the optimal swirl ratio for enhanced mixing may be characterized by a non-dimensional parameter expressed as a ratio of the jet momentum of the azi-muthal momentum.
机译:众所周知,柴油发动机中的涡流是影响燃料和空气混合,放热,排放和发动机整体性能的重要参数。在这项研究中,采用了一种用于发动机中流动,喷雾和燃烧的多维模型来研究柴油发动机中涡流和燃油喷雾之间的相互作用。通常认为涡旋会增强柴油发动机中的混合。先前的研究表明,对于给定的一组发动机工况,可能存在最佳的涡流水平,在该涡流水平下,室内的混合达到最大。该最佳水平可以由增加的射流表面积与室内空气利用之间的平衡产生。在这项工作中,通过对腔室内的流速模式进行详细评估,并将这些模式与文献中针对横流喷嘴的模式相联系,可以明确这些趋势。还显示出,用于增强混合的最佳涡流比可以用表示为方位角动量的喷射动量之比的无量纲参数来表征。

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