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Investigation of collection efficiency of round-nozzle impactors at different atmospheric pressures and temperatures

机译:圆嘴冲击器在不同大气压力和温度下的收集效率研究

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A simulation approach for predicting the collection efficiency of inertial impactors was developed by calculating particle trajectories in a Lagrangian reference frame. When numerically predicted collection efficiencies of the electrical low-pressure impactor (ELPI) were compared with the experimental data found in the literature, the agreement was good and the relative difference in cut-off size was less than 12%. Then, balloon-borne impactors having nominal cut-off sizes of 1 mu m, 2.5 mu m, and 10 mu m were designed, and their collection efficiencies were predicted using the present simulation approach. When volumetric sampling flow rate of air introduced to the single-stage round-nozzle impactors was fixed at varying altitude, the cut-off sizes were predicted to decrease from 0.98 mu m, 2.47 mu m, and 9.86 mu m at sea level to 0.47 mu m (by 52.0%), 1.70 mu m (by 31.2%), and 7.62 mu m (by 22.7%) at 16-km-altitude, respectively. When volumetric sampling flow rate was adjusted, the cut-off sizes of the single-stage round-nozzle impactors were estimated to remain almost unchanged with the variation of less than 5.1%, 7.3%, and 10.6%, respectively, at varying altitude in troposphere. (C) 2015 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:通过计算拉格朗日参考系中的粒子轨迹,开发了一种预测惯性冲击器收集效率的模拟方法。将低压电动冲击器(ELPI)的数值预测收集效率与文献中的实验数据进行比较时,一致性很好,并且截留尺寸的相对差异小于12%。然后,设计了标称截止尺寸为1μm,2.5μm和10μm的气球式冲击器,并使用本模拟方法预测了它们的收集效率。当引入到单级圆形喷嘴撞击器的空气的体积采样流速固定在不同的高度时,预计截留尺寸将从海平面的0.98μm,2.47μm和9.86μm减小到0.47分别在16公里的高度上达到5微米(52.0%),1.70微米(31.2%)和7.62微米(22.7%)。调整体积采样流速后,估计单级圆形喷嘴撞击器的截留尺寸几乎保持不变,并且在不同海拔高度下的变化分别小于5.1%,7.3%和10.6%。对流层。 (C)2015年日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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