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Diesel soot mass calculation in real-time with a differential mobility spectrometer

机译:差动迁移率谱仪实时计算柴油机烟灰质量

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This paper presents a methodology to allow a real-time particle size spectrometer to produce a mass concentration output by calculation from its electrical mobility response.As part of this,a Bayesian statistical algorithm for parametrising spectral data from the Cambustion DMS500 in terms of a number of lognormal functions is outlined,allowing the nucleation and accumulation modes of a Diesel aerosol to be treated separately and also to reduce mass calculation noise and improve spectral resolution.Previous literature is combined with new experimental results to develop a sizemass power-law relationship for this instrument.The effective density as a function of size for this instrument is found to be closer to that for water droplets than equivalent relationships for DMA/SMPS measurements in the literature,therefore making DMS500 mass calculation less susceptible to error from liquid adsorbed on agglomerates.The technique is validated with two Diesel engines against the gravimetric methods of filter paper and Diesel particulate filter (DPF) weighings.Good agreement is achieved over a variety of engine conditions,with the mean and standard deviation of the percentage difference of the calculated mass concentration from DPF weighings being -12.1 +- 11.4% and from filter paper weighings being -15.1 +- 18.0%.The calculated mass concentrations are systematically below those of the gravimetric methods.
机译:本文提出了一种方法,该方法允许实时粒度谱仪根据其电迁移率响应进行计算,从而产生质量浓度输出。作为此方法的一部分,贝叶斯统计算法可以根据数量对来自Cambustion DMS500的光谱数据进行参数化概述了对数正态函数的特征,允许分开处理柴油机气溶胶的成核和积累模式,并减少质量计算噪声和提高光谱分辨率。以前的文献与新的实验结果相结合,为此建立了尺寸质量幂律关系与文献中的DMA / SMPS测量的等效关系相比,该仪器的有效密度随尺寸的变化关系更接近于水滴的有效密度,因此使DMS500质量计算不易因团聚体上吸附的液体而产生误差。该技术已通过两个柴油发动机针对重量法的验证滤纸和柴油机微粒过滤器(DPF)称量的称重。在各种发动机工况下达成了良好的一致性,从DPF称量计算出的质量浓度百分比差的平均值和标准偏差为-12.1 +-11.4%,滤纸重量为-15.1±-18.0%。计算的质量浓度系统地低于重量法。

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