首页> 外文会议>Diesel exhaust emission control modeling, 2009 >The Filtration, Oxidation and Pressure Drop Characteristics of a Catalyzed Participate Filter during Active Regeneration - A1D Modeling Study
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The Filtration, Oxidation and Pressure Drop Characteristics of a Catalyzed Participate Filter during Active Regeneration - A1D Modeling Study

机译:活性再生过程中催化参与式过滤器的过滤,氧化和压降特性-A1D建模研究

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Active regeneration of a catalyzed paniculate filter (CPF) is affected by a number of parameters specifically paniculate matter loading and inlet temperature. The MTU 1-D 2-Layer CPF model [1] was used to analyze these effects on the pressure drop, oxidation and filtration characteristics of a CPF during active regeneration. In addition, modeling results for post loading experiments were analyzed to understand the difference between loading a clean filter as compared to a partially regenerated filter.Experimental data obtained with a production Cummins regenerative paniculate filter for loading, active regenerations and post loading experiments were used to calibrate the MTU 1-D 2-Layer CPF model. The model predicted results are compared with the experimental data and were analyzed to understand the CPF characteristics during active regeneration at 1.1, 2.2 and 4.1 g/L paniculate matter (PM) loading and CPF inlet temperatures of 525, 550 and 600 ℃. The activation energies for thermal oxidation reported in Chilumukuru et al. [2] were used and confirmed by these modeling results.The model results showed that the pressure drop during active regeneration at 525, 550 and 600℃ CPF inlet temperature is a function of PM loading. The pressure drop across the CPF has a higher rate of decay for higher temperatures. Analysis of model results showed that the peak pressure drop is a function of CPF inlet temperature at the same PM loading. The model results for all experiments targeted to up to 70% PM oxidation showed that the total filtration efficiency across the CPF during active regeneration is over 99%. Model results for post loading showed that the pressure drop across the CPF is lower compared to loading for the same amount of PM present in the CPF. The difference in pressure drop between loading and post loading was correlated to the wall pressure drop which is directly proportional to the mass of PM in the wall.
机译:催化颗粒过滤器(CPF)的主动再生受许多参数的影响,特别是颗粒物的装载量和入口温度。 MTU 1-D 2层CPF模型[1]用于分析这些对主动再生过程中CPF的压降,氧化和过滤特性的影响。此外,还分析了加载后实验的建模结果,以了解加载干净的过滤器与部分再生的过滤器之间的区别。校准MTU 1-D 2层CPF模型。将模型的预测结果与实验数据进行比较,并进行分析,以了解在1.1、2.2和4.1 g / L颗粒物质(PM)负荷以及525、550和600℃的CPF入口温度下主动再生期间的CPF特性。 Chilumukuru等人报道了热氧化的活化能。模型结果表明,在525、550和600℃CPF入口温度下主动再生过程中的压降是PM负荷的函数。 CPF上的压降在较高温度下具有较高的衰减率。对模型结果的分析表明,在相同的PM负荷下,峰值压降是CPF入口温度的函数。所有针对高达70%PM氧化的实验的模型结果表明,主动再生期间整个CPF的总过滤效率超过99%。后加载的模型结果表明,与CPF中存在相同数量的PM的加载相比,CPF上的压降要低。加载和加载后压力降之间的差异与壁压降相关,壁压降与壁中PM的质量成正比。

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