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Transmission Efficiency of an Aerodynamic Focusing Lens System: Comparison of Model Calculations and Laboratory Measurements for the Aerodyne Aerosol Mass Spectrometer

机译:气动调焦透镜系统的传输效率:Aerodyne气溶胶质谱仪的模型计算和实验室测量结果的比较

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摘要

The size-dependent particle transmission efficiency of the aerodynamic lens system used in the Aerodyne Aerosol Mass Spectrometer (AMS) was investigated with computational fluid dynamics (CFD) calculations and experimental measurements. The CFD calculations revealed that the entire lens system, including the aerodynamic lens itself, the critical orifice which defines the operating lens pressure, and a valve assembly, needs to be considered. Previous calculations considered only the aerodynamic lens. The calculations also investigated the effect of operating the lens system at two different sampling pressures, 7.8 × 104 Pa (585 torr) and 1.0 × 105 Pa (760 torr). Experimental measurements of transmission efficiency were performed with size-selected diethyl hexyl sebacate (DEHS), NH4NO3, and NaNO3 particles on three different AMS instruments at two different ambient sampling pressures (7.8 × 104 Pa, 585 torr and 1.0 × 105 Pa, 760 torr). Comparisons of the measurements and the calculations showqualitative agreement, but there are significant deviations which are as yet unexplained. On the small size end (30 nm to 150 nm vacuum aerodynamic diameter), the measured transmission efficiency is lower than predicted. On the large size end (\u3e350 nm vacuum aerodynamic diameter)
机译:通过计算流体动力学(CFD)计算和实验测量研究了Aerodyne气溶胶质谱仪(AMS)中使用的空气动力学透镜系统的尺寸依赖性颗粒传输效率。 CFD计算表明,需要考虑整个透镜系统,包括空气动力学透镜本身,定义工作透镜压力的临界孔和阀组件。先前的计算仅考虑了空气动力学透镜。计算还研究了在两种不同的采样压力下(7.8×104 Pa(585托)和1.0×105 Pa(760托))操作镜头系统的效果。在三种不同的AMS仪器上,在两种不同的环境采样压力(7.8×104 Pa,585托和1.0×105 Pa,760托)下,使用尺寸选择的癸二酸癸二酯(DEHS),NH4NO3和NaNO3颗粒进行传输效率的实验测量。 )。测量结果和计算结果的比较显示出定性的一致性,但是仍然存在尚未解释的重大偏差。在小型端(真空空气动力学直径为30 nm至150 nm)上,测得的传输效率低于预期。在大尺寸的一端(真空空气动力学直径)

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