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Development of novel direct-injection diesel engine combustion chamber designs using computational fluid dynamics

机译:新型直喷柴油发动机燃烧室设计使用计算流体动力学的开发

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A three-dimensional CFD code, based on the KIVA code, is used to explore alternatives to conventional DI diesel engine designs for reducing NO{sub}x and soot emissions without sacrificing engine performance. The effects of combustion chamber design and fuel spray orientation are investigated using a new proposed GAMAA engine concept, and two new multiple injector combustion system (MICS) designs which utilize multiple injectors to increase gas motion and enhance fuel/air mixing in the combustion chamber. From these computational studies, it is found that both soot and nitrous oxide emissions can be significantly reduced without the need for more conventional emission control strategies such as EGR or ultra-high injection pressure. The results suggest that CFD models can be a useful tool not only for understanding combustion and emissions production, but also for investigating new design concepts.
机译:基于KIVA代码的三维CFD代码用于探索传统的DI柴油发动机设计的替代方案,以减少{Sub} x和烟灰发射而不牺牲发动机性能。使用新的古娜发动机概念研究了燃烧室设计和燃料喷射取向的影响,以及使用多个喷射器的两个新的多个喷射器燃烧系统(MICS)设计来增加气体运动并增强燃烧室中的燃料/空气混合。从这些计算研究中,发现可以显着降低烟灰和氧化二氮排放,而无需更多常规排放控制策略,例如EGR或超高注射压力。结果表明,CFD模型可以是一个有用的工具,不仅用于了解燃烧和排放生产,还可以是调查新的设计概念。

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