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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >An Evaluation of Mass-Weighted Size Distribution Measurements with the Model 3320 Aerodynamic Particle Sizer
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An Evaluation of Mass-Weighted Size Distribution Measurements with the Model 3320 Aerodynamic Particle Sizer

机译:使用3320型空气动力学粒度仪评估重量加权尺寸分布

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摘要

The ability of the Model 3320 aerodynamic particle sizer (APS) to make accurate mass-weighted size distribution measurements was investigated. Significant errors were observed in APS size distribution measurements with measured mass median aerodynamic diameters (MMADs) as much as 17 times higher than from cascade impactor measurements.Analysis of APS correlated time-of-flight and light scattering data indicated that the MMAD distortions were due to a few anomalous large particle measurements (approx 0.1% of the total measurements) with surprisingly low scattered light. Computational fluid dynamics modeling indicated that these anomalous measurements were due to particles that deviated from the intended aerosol pathway and recirculated through the APS measurement volume at low velocities leading to erroneous large particle measurements. A technique for removing erroneous measurements based on correlated aerodynamic diameter and light scattering values is presnted. When this technique was used, APS and cascade impactor size distribution measurements agreed well.
机译:研究了3320型空气动力学粒度仪(APS)进行精确的质量加权粒度分布测量的能力。在APS尺寸分布测量中,观察到的质量中位数空气动力学直径(MMAD)比级联撞击器测量高出17倍,发现了显着误差.APS相关的飞行时间和光散射数据分析表明MMAD变形是由于到少数异常大颗粒测量值(约占总测量值的0.1%),且散射光极低。计算流体动力学模型表明,这些异常测量结果是由于颗粒偏离了预期的气溶胶路径,并在低速下通过APS测量体积再循环,从而导致了错误的大颗粒测量。提出了一种基于相关的空气动力学直径和光散射值消除错误测量结果的技术。使用此技术时,APS和级联冲击器尺寸分布的测量结果非常吻合。

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