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Estimating aerosol particle charging parameters using a Bayesian inversion technique

机译:使用贝叶斯反演技术估算气溶胶颗粒的带电参数

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摘要

A Bayesian inversion routine is described in which data from tandem differential mobility analysis(TDMA)can be used to determine fundamental parameters for charging models as a function of particle size.The measurement and inversion techniques were verified using simulated data for particles in the 50-500 nm range undergoing unipolar diffusion charging as described by Fuchs'limiting sphere theory,for which the fundamental charging parameter is the product of the unipolar ion concentration and residence time within the charger,the so-called nt product.Under conditions where the average particle charge is greater than one unit charge,the inversion routine is precisely and accurately able to determine the nt value.The inversion routine breaks down,however,when the average number of charges per particle is well below unity,i.e.for low nt values or for small particle sizes.Incorporation of charging efficiency data in addition to TDMA data can allow for use of the inversion routine when the average number of charges per particle is low.With its limitations known,the inversion routine was applied to determine the nt value for the unipolar charger used in the TSI electrical aerosol detector(EAD),model 3070A,for particles in the 50-200 nm size range.The effective nt value within the EAD charger decreased with decreasing particle size,implying that charged particle losses occur within the EAD charger.The described inversion routine is unique in its ability to determine size dependent charge model parameters,and can be utilized with any given charging model.It is expected that this technique will be of use in advancing the understanding of aerosol particle charging models and in future design of unipolar chargers.
机译:描述了一种贝叶斯反演程序,其中可以使用串联微分迁移率分析(TDMA)的数据确定充电模型的基本参数与颗粒大小的关系。使用模拟数据对50-如Fuchs的极限球理论所述,对500 nm范围进行单极性扩散充电,其基本充电参数是单极性离子浓度与充电器内停留时间的乘积,即所谓的nt乘积。如果电荷大于一个单位电荷,则该反演例程可以准确而准确地确定nt值。但是,当每个粒子的平均电荷数远低于1时,即对于低nt值或对于当TDMA数据包括TDMA数据时,除电荷效率数据外还可以使用反演程序每个粒子的平均电荷数很低。在已知局限性的情况下,应用反演程序来确定用于50-200 nm粒子的TSI电喷雾检测器(EAD)3070A型所用单极性充电器的nt值。 EAD充电器内的有效nt值随颗粒尺寸的减小而减小,这意味着EAD充电器内发生带电粒子损失。所描述的反演程序具有确定尺寸相关的电荷模型参数的独特能力,可与任何给定的充电模型。预计该技术将用于增进对气溶胶颗粒充电模型的理解以及单极充电器的未来设计。

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