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Ash Effects on Diesel Particulate Filter Pressure Drop Sensitivity to Soot and Implications for Regeneration Frequency and DPF Control

机译:灰分对柴油机颗粒过滤器压降烟尘敏感性的影响及其对再生频率和DPF控制的意义

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Ash, primarily derived from diesel engine lubricants, accumulates in diesel particulate filters directly affecting the filter's pressure drop sensitivity to soot accumulation, thus impacting regeneration frequency and fuel economy. After approximately 33,000 miles of equivalent on-road aging, ash comprises more than half of the material accumulated in a typical cordierite filter. Ash accumulation reduces the effective filtration area, resulting in higher local soot loads toward the front of the filter. At a typical ash cleaning interval of 150,000 miles, ash more than doubles the filter's pressure drop sensitivity to soot, in addition to raising the pressure drop level itself. In order to evaluate the effects of lubricant-derived ash on DPF pressure drop performance, a novel accelerated ash loading system was employed to generate the ash and load the DPFs under carefully-controlled exhaust conditions. The ash loading system utilized a conventional CJ-4 oil and was coupled to the exhaust of a Cummins 1SB diesel engine, allowing for accelerated ash loading and DPF performance evaluation with realistic exhaust conditions. Following DPF performance evaluation, the filters were subjected to a detailed post-mortem analysis in which key ash properties were measured and quantified. Measurements of ash properties and distribution provide key information to interpret the experimental results. In parallel with the experiments, theoretical models were developed and utilized to provide additional details regarding the underlying mechanisms responsible for the manner in which ash alters DPF channel geometry and affects the conditions under which soot is accumulated. The results show a significant increase in local soot loads, elevated filter wall velocities, and a resulting increase in the Peclet number with ash accumulation. Based on the DPF post-mortem analysis and theoretical models, explanations for the differences in DPF pressure drop sensitivity to soot for ash-loaded filters and DPFs containing no ash were developed.
机译:灰分主要来自柴油机润滑油,其堆积在柴油机微粒滤清器中,直接影响滤清器对烟灰积累的压降敏感性,从而影响再生频率和燃油经济性。在大约33,000英里的等效道路老化后,灰分占典型堇青石过滤器中累积的材料的一半以上。积灰减少了有效的过滤面积,导致朝着过滤器前部的局部烟灰负荷增加。在典型的150,000英里的除灰间隔内,除提高压降水平本身之外,灰分使过滤器对烟灰的压降敏感性提高了一倍以上。为了评估润滑剂产生的灰分对DPF压降性能的影响,采用了一种新型的加速灰分加载系统来生成灰分并在精心控制的排气条件下加载DPF。灰分装载系统使用传统的CJ-4油,并与康明斯1SB柴油机的排气相连,从而可以在实际排气条件下加速灰分装载和DPF性能评估。在对DPF性能进行评估之后,对过滤器进行了详细的验尸分析,在该分析中,对关键的灰分特性进行了测量和量化。灰分性质和分布的测量提供了解释实验结果的关键信息。与实验同时,开发了理论模型并利用其提供了有关灰分改变DPF通道几何形状并影响烟灰积累条件的潜在机理的其他详细信息。结果表明,局部烟灰负荷显着增加,过滤器壁速度升高,并且随着灰分积聚,派克雷特数随之增加。基于DPF事后分析和理论模型,对灰分过滤器和不含灰分的DPF对烟灰的DPF压降敏感性的差异做出了解释。

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