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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Simulating aerosol chamber experiments with the particle-resolved aerosol model PartMC
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Simulating aerosol chamber experiments with the particle-resolved aerosol model PartMC

机译:使用颗粒分离的气溶胶模型partmc模拟气溶胶室实验

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This article presents a verification and validation study of the stochastic particle-resolved aerosol model PartMC. Model verification was performed against self-preserving analytical solutions, while for validation three experiments were performed where the size distribution evolution of coagulating ammonium sulfate particles was measured in a cylindrical stainless steel chamber. To compare with the chamber measurements, PartMC was extended to include the representation of fractal particle structure and wall loss. This introduced five unknown parameters to the governing equation, which were determined by a combination of scanning electron microscopy (SEM) analysis and an objective optimization procedure. Excellent agreement between modeled and measured size distributions was achieved using the same set of parameters for all three experiments. Assuming spherical particles led to model results that were inconsistent with the measurements. The best agreement between model and measurement was obtained for the fractal dimension of 2.3, indicating that the non-spherical structure of the particle agglomerates in the chamber needed to be taken into account.(c) 2017 American Association for Aerosol Research
机译:本文介绍了随机粒子分离的气溶胶模型partmc的验证和验证研究。针对自我保留分析解决方案进行模型验证,同时进行验证,进行三个实验,其中在圆柱形不锈钢室中测量凝聚硫酸铵颗粒的尺寸分布演化。为了与腔室测量进行比较,Partmc延长以包括分形颗粒结构和壁损的表示。这将五个未知参数引入了控制方程,其通过扫描电子显微镜(SEM)分析和客观优化程序的组合来确定。使用相同的三个实验,实现了建模和测量尺寸分布之间的良好协议。假设球形颗粒导致模拟与测量不一致的结果。为2.3的分形尺寸获得模型和测量之间的最佳达成,表明腔室中的颗粒附聚物的非球形结构需要考虑到。(c)2017年美国气溶胶研究协会

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