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On the Impact of Particulate Matter Distribution on Pressure Drop of Wall-Flow Particulate Filters

机译:颗粒物分布对壁流式颗粒过滤器压降的影响

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Wall-flow particulate filters are a required exhaust aftertreatment system to abate particulate matter emissions and meet current and incoming regulations applying worldwide to new generations of diesel and gasoline internal combustion engines. Despite the high filtration efficiency covering the whole range of emitted particle sizes, the porous substrate constitutes a flow restriction especially relevant as particulate matter, both soot and ash, is collected. The dependence of the resulting pressure drop, and hence the fuel consumption penalty, on the particulate matter distribution along the inlet channels is discussed in this paper taking as reference experimental data obtained in water injection tests before the particulate filter. This technique is demonstrated to reduce the particulate filter pressure drop without negative effects on filtration performance. In order to justify these experimental data, the characteristics of the particulate layer are diagnosed applying modeling techniques. Different soot mass distributions along the inlet channels are analyzed combined with porosity change to assess the new properties after water injection. Their influence on the subsequent soot loading process and regeneration is assessed. The results evidence the main mechanisms of the water injection at the filter inlet to reduce pressure drop and boost the interest for control strategies able to force the re-entrainment of most of the particulate matter towards the inlet channels’ end.
机译:壁流式微粒过滤器是必不可少的排气后处理系统,可减少微粒物质的排放并满足当前和即将到来的适用于全球的新一代柴油和汽油内燃发动机法规。尽管在整个发射颗粒尺寸范围内都具有很高的过滤效率,但多孔基材仍构成了流量限制,尤其是在收集烟灰和灰分的颗粒物时特别重要。本文以颗粒过滤器之前注水试验中获得的参考实验数据为基础,讨论了所得压降以及燃料消耗损失对沿入口通道的颗粒物分布的依赖性。已证明该技术可减少颗粒过滤器的压降,而不会对过滤性能产生负面影响。为了证明这些实验数据的合理性,应用建模技术对颗粒层的特征进行了诊断。分析了沿进口通道的不同烟灰质量分布,并结合孔隙率变化来评估注水后的新性能。评估它们对随后的烟灰加载过程和再生的影响。结果证明了在过滤器入口注水的主要机理是减少压降并提高对控制策略的兴趣,这些控制策略能够迫使大多数颗粒物重新夹带进入入口通道的末端。

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