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首页> 外文期刊>Atmospheric environment >Comparative efficiency of airborne pollen concentration evaluation in two pollen sampler designs related to impaction and changes in internal wind speed
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Comparative efficiency of airborne pollen concentration evaluation in two pollen sampler designs related to impaction and changes in internal wind speed

机译:两种与影响和内部风速变化有关的花粉采样器设计中的空气中花粉浓度评估的比较效率

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摘要

Pollen sampling has been performed using various sampling methods around the world. However, the sampling efficiencies of these methods remain unclear. In this study, we compared the sampling efficiency of a Sigma-2 two-layered aerosol sampling inlet and a Hirst-style wind vane inlet to reveal the relationship between sampling efficiency and samplers' physical characteristics. The initial results show a higher sampling efficiency for the former. To further explore this finding, we developed a theory based on 1) continuity equations for pollen grain concentrations and 2) impaction theory. Applying our developed theory to the experimental results revealed that impaction is a significant contributor to the relatively higher sampling efficiency of the two-layered sampling inlet, due to the larger cross-sectional area of the two-layered inlet and slower sampled pollen grain speed within the sampler. Additionally, applying a correction based on the theoretical impaction effects improved the experimental results. Our experiment demonstrated the possibility of a pollen sampler showing discrepancies in airborne pollen concentrations and explained the mechanism of this inaccuracy. The application of these results to pollen sampling will aid understanding of actual airborne pollen concentration.
机译:花粉采样已在全球范围内使用各种采样方法进行。但是,这些方法的采样效率仍然不清楚。在这项研究中,我们比较了Sigma-2两层气溶胶采样入口和Hirst型风向标入口的采样效率,以揭示采样效率与采样器的物理特性之间的关系。初步结果显示前者的采样效率更高。为了进一步探索这一发现,我们开发了一种基于1)花粉颗粒浓度连续性方程和2)碰撞理论的理论。将我们开发的理论应用于实验结果表明,由于两层进样口的截面积较大且采样花粉粒速度较慢,因此影响是两层进样口相对较高的采样效率的重要因素。采样器。此外,基于理论撞击效应进行校正可以改善实验结果。我们的实验证明了花粉取样器显示出空气中花粉浓度差异的可能性,并解释了这种误差的机理。将这些结果应用于花粉采样将有助于了解实际的空气中花粉浓度。

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