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Quantitative estimation of the impact of ash accumulation on diesel particulate filter related fuel penalty for a typical modern on-road heavy-duty diesel engine

机译:灰烬累积对典型现代公路重型柴油发动机柴油颗粒滤清器相关燃料损失的影响的定量估计

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Fuel saving and emission reduction are big challenges in the development of diesel engines. Diesel particulate filters (DPF) can effectively reduce particulate matter (PM) emissions of diesel engines but negatively affect the engine fuel economy. Some previous studies have been conducted to investigate the effects of DPFs on engine fuel economy, however, nearly all previous studies have neglected the impact of ash accumulation on DPF related fuel penalty. This work aims to quantitatively estimate the impact of ash accumulation on DPF related fuel penalty for a typical modern on-road heavy-duty diesel engine. For this purpose, a one-dimensional full-size DPF model considering ash effects was built and validated in this work, and an engine bench test was conducted to evaluate the effects of exhaust backpressure on engine fuel consumption. An estimation method for the quantitative evaluation of the impact of ash accumulation on DPF related engine fuel penalty was proposed based on the model and experimental data. Subsequently, the impact of ash accumulation on DPF lifetime fuel penalty as well as the potential of fuel saving by DPF ash management for a typical modern on-road heavy-duty diesel engine were quantitatively analyzed. In addition, the effects of engine-out PM emission concentration and DPF maximum soot loading prior to regeneration on the impact of ash accumulation on DPF lifetime fuel penalty and the fuel saving potential of DPF ash management are investigated with the estimation method. The results showed that the DPF ash induced fuel penalty ranged from 0.02% to 0.42% for the typical modern on-road heavy-duty diesel engine studied in this work, and the DPF lifetime fuel penalty could be reduced by optimizing the DPF ash cleaning interval. The fuel saving potential of DPF ash management ranged from 0.22% to 0.69% for all the cases studied in this work, which has the similar magnitude to some specific individual applications such as engine friction reduction, lowering accessory losses, or pumping optimization. Both the DPF ash induced fuel penalty and the fuel saving potential of DPF ash management are increasing with the rise of engine-out PM emission concentration no matter the DPF control strategy is implemented without or with ash correction, while the DPF maximum soot loading prior to regeneration showed little effects on the ash induced fuel penalty and the fuel saving potential of DPF ash management.
机译:节省燃料和减少排放是柴油发动机发展中的巨大挑战。柴油颗粒过滤器(DPF)可以有效减少柴油发动机的颗粒物(PM)排放,但会对发动机燃油经济性产生负面影响。已经进行了一些先前的研究来研究DPF对发动机燃料经济性的影响,但是,几乎所有先前的研究都忽略了灰分积累对DPF相关的燃料损失的影响。这项工作旨在定量评估灰分积聚对典型的现代公路重型柴油发动机与DPF相关的燃油损失的影响。为此,在这项工作中建立并验证了考虑灰分效应的一维全尺寸DPF模型,并进行了发动机台架试验以评估排气背压对发动机燃油消耗的影响。基于模型和实验数据,提出了一种灰分累积对DPF相关发动机燃油损失影响定量评估的估算方法。随后,对典型现代现代重型柴油发动机的灰分积累对DPF使用寿命燃料损失的影响以及通过DPF灰分管理节省燃料的潜力进行了定量分析。此外,采用估算方法研究了再生前发动机熄火后的PM排放浓度和DPF最大烟灰负荷对灰分积聚对DPF寿命燃料损失和DPF灰分管理燃料节省潜力的影响。结果表明,针对这项工作研究的典型现代现代重型柴油发动机,DPF灰分引起的燃油损失在0.02%到0.42%之间,并且通过优化DPF灰分清洁间隔可以减少DPF寿命的燃油损失。 。在这项工作中研究的所有案例中,DPF灰分管理的燃油节省潜力在0.22%至0.69%的范围内,与某些特定的单独应用(例如,减少发动机摩擦,降低附件损失或优化泵送)的幅度相近。无论是否在不使用灰校正的情况下实施DPF控制策略,DPF灰引起的燃油损失和DPF灰管理的燃料节省潜力都随着发动机排出的PM排放浓度的增加而增加,而DPF之前的最大烟灰装载量再生对灰分引起的燃料损失和DPF灰分管理的燃料节省潜力几乎没有影响。

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