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Simulating Study of Premixed Charge Compression Ignition on Light-Duty Diesel Fuel Economy and Emissions Control

机译:浅色柴油燃料经济性和排放控制上预混电荷压缩点火的模拟研究

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We utilize the Powertrain Systems Analysis Toolkit (PSAT) combined with transient engine and aftertreatment component models to simulate the impact of premixed charge compression ignition (PCCI) on the fuel economy and emissions of light-duty (LD) diesel-powered conventional and hybrid electric vehicles (HEVs). Our simulated aftertreatment train consists of a diesel oxidation catalyst (DOC), lean NO_x trap (LNT), and catalyzed diesel particulate filter (DPF). The results indicate that utilizing PCCI combustion significantly reduces fuel consumption and tailpipe emissions for the conventional diesel-powered vehicle with NO_x and particulate emissions controls. These benefits result from a favorable engine speed-load distribution over the cycle combined with a corresponding reduction in the need to regenerate the LNT and DPF. However, the current PCCI technology appears to offer less potential benefit for diesel HEVs equipped with similar emissions controls. This is because PCCI can only be activated over a relatively small part of the drive cycle. Thus we conclude that future utilization of PCCI in diesel HEVs will require significant extension of the available speed-load range for PCCI and revision of current HEV engine management strategies before significant benefits can be realized.
机译:我们利用动力总成系统分析工具包(PSAT)与瞬态发动机和后处理组件模型相结合,以模拟预混电荷压缩点火(PCCI)对燃油经济性和轻型(LD)柴油动力传统和混合电气的影响车辆(HEV)。我们的模拟后处理火车由柴油氧化催化剂(DOC),瘦NO_X陷阱(LNT)和催化的柴油颗粒过滤器(DPF)组成。结果表明,利用PCCI燃烧显着降低了传统柴油动力车辆的燃料消耗和尾管排放,No_x和微粒排放控制。这些益处是由于循环上的有利发动机速度载荷分布,结合了相应的减少,需要再生LNT和DPF。但是,目前的PCCI技术似乎为配备类似的排放控制的柴油HEV提供了更少的潜在益处。这是因为PCCI只能在驱动周期的相对较小的部分上激活。因此,我们得出结论,在柴油HEV中的未来利用PCCI将需要延长PCCI的可用速度负载范围和在可以实现显着效益之前的电流HEV发动机管理策略的修订。

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