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Exploring the use of multiple injectors and split injection to reduce DI diesel engine emissions

机译:探索多种注射器的使用并分开注射以减少DI柴油发动机排放

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This research uses computational modeling to explore methods to increase diesel engine power density while maintaining low pollutant emission levels. Previous experimental studies have shown that injection-rate profiles and injector configurations play important roles on the performance and emissions of particulate and NO{sub}x in DI diesel engines. However, there is a lack of systematic studies and fundamental understanding of the mechanisms of spray atomization, mixture formation and distribution, and subsequently, the combustion processes in spray/spray and spray/swirl interaction and flow configurations. In this study, the effects of split injections and multiple injector configurations on diesel engine emissions are investigated numerically using a multi-dimensional computer code. In order to be able to explore the effects of enhanced fuel-air mixing, the use of multiple injectors with different injector locations, spray orientations and impingement angles was studied. The interaction of the spray with the geometry of the combustion chamber was also systematically studied. The potential for the use of multiple injectors to increase engine power density and to significantly reduce particulate and NO{sub}x emissions in DI diesel engines is revealed. This work demonstrates that multi-dimensional modeling can now be used to gain insight into the combustion process and to provide direction for exploring new engine concepts.
机译:本研究采用的计算模型,探索方法,以提高柴油发动机的功率密度,同时保持低污染物排放水平。以前的实验研究表明,注射速率曲线和喷油器的配置发挥的性能很重要的角色,并在DI柴油发动机颗粒和NO {}子x的排放。但是,存在缺乏系统的研究和喷射雾化,混合物形成和分布的机理的基本理解的,随后,在喷雾中的燃烧过程/喷雾和喷雾/涡流相互作用和流配置。在这项研究中,分割喷射和多个喷射器构造对柴油发动机排放的效果数值使用多维计算机代码的影响。为了能够探索提高的燃料 - 空气混合,用不同的喷射器的位置使用多个喷射器中的影响,喷雾方向和冲击角度进行了研究。与燃烧室的几何形状的喷雾的相互作用也被系统地研究。对于使用多个喷射器的,以增加发动机的功率密度,并减少显著颗粒和NO {子}的电位X在DI柴油机排放显露。这项工作表明,多维建模,现在可以用来洞察燃烧过程,并探索新的发动机概念提供指导。

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