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首页> 外文期刊>Journal of Aerosol Science >Hygroscopic growth and evaporation in an aerosol with boundary heat and mass transfer
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Hygroscopic growth and evaporation in an aerosol with boundary heat and mass transfer

机译:具有边界传热和传质的气溶胶中的吸湿性生长和蒸发

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摘要

This study demonstrates an experimental method for using temperature measurements as a means for validating computations of particle size distribution in a growing or evaporating high-concentration aerosol flowing in a tube with wall heat and mass transfer.The method is based on the premise that aggregate growth or condensation from an ensemble of aerosol droplets can be inferred by comparing temperature evolution of an aerosol-laden and aerosol-free flow through a heated or cooled tube.The difference in bulk temperature is used as an indicator of latent heat effect which is directly related to condensational and evaporative particle size changes.Dimensional analysis is used to derive the conditions under which such an approach can be used.Two parameters,the "coupling number" and the dimensionless mass concentration are found to govern the sensitivity of continuous phase temperature to aggregate evaporation or condensation of the droplet ensemble,and the sensitivity of temperature to droplet diameter changes,respectively.Experimental data for an aqueous saline aerosol flowing through a heated,constant wall temperature tube are presented and compared to predictions derived using a Lagrangian plug-flow model with a fully moving particle bin structure.Measured and predicted bulk phase temperatures agree to within 3%.Using sensitivity analysis,it is shown that hygroscopic particle diameter changes will be at least as accurate.
机译:这项研究证明了一种实验方法,该方法利用温度测量作为验证通过壁传热和传质在管中生长或蒸发的高浓度气溶胶中颗粒尺寸分布的计算方法。该方法基于聚集体生长的前提可以通过比较通过加热或冷却管的载有气溶胶的气流和无气溶胶的气流的温度演变来推断出气溶胶小滴的聚集或凝结。本体温度的差异用作潜热效应的指标,这直接相关进行尺寸分析,得出可采用这种方法的条件。发现了两个参数,“耦合数”和无量纲质量浓度来控制连续相温度对聚集体的敏感性。液滴整体的蒸发或凝结,温度对温度的敏感性分别显示了小珠直径的变化。流过加热的恒定壁温管的盐水盐水气溶胶的实验数据已提交,并与使用具有完全移动的粒子仓结构的拉格朗日推流模型得出的预测值进行了比较。误差在3%以内。使用敏感性分析表明,吸湿性粒径变化至少准确。

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