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A method to limit uncertainties in aerosol properties determined from comparative measurements

机译:限制通过比较测量确定的气溶胶特性不确定性的方法

摘要

© 2015 Elsevier Ltd. Certain types of aerosol measurements require an experimental set up including two or more routes through which the particles are made to flow alternatively. Indeed, this appears to be critical to limit uncertainties in aerosol properties determined from comparative measurements. Typical examples are the comparison of the performance of different instruments and the measurement of particle filtration efficiency. Except for the presence of the test units (e.g. the instruments or devices to be compared) it is commonly accepted that the two routes must be identical: they should contain the same type and number of tubes, valves, junctions, bends, connectors, etc. For nanometer-sized particles undergoing substantial diffusion losses, the lack of perfect symmetry between the two routes induces discrepancies in measurements performed in both lines. This article provides a general methodology to avoid or reduce the errors arising from these possible asymmetries. The method consists in making two measurements, one with the given setup, the other with an alternative set up in which the test units have been exchanged. The correct result (e.g. filtration efficiency) is the geometric mean of the results obtained with the two alternative setups. The proposed methodology may seem tedious and time consuming, but doing so, the experimental measurement is not affected neither by possible errors due to a test aerosol changing with time nor by the possible asymmetry of the line accessories (valves, T[U+05F3]s, connections, etc.).
机译:©2015 Elsevier Ltd.。某些类型的气溶胶测量需要进行实验设置,包括两个或更多个使颗粒交替流动的路径。实际上,这对于限制由对比测量确定的气溶胶特性的不确定性似乎至关重要。典型的例子是比较不同仪器的性能和测量颗粒过滤效率。除了存在测试单元(例如要比较的仪器或设备)外,通常认为两条路径必须相同:它们应包含相同类型和数量的管子,阀门,接头,弯头,连接器等对于经历大量扩散损失的纳米级颗粒,两条路径之间缺乏完美的对称性会导致两条线中的测量结果出现差异。本文提供了一种通用方法,可以避免或减少由这些可能的不对称引起的错误。该方法包括进行两次测量,一次进行给定设置,另一次进行另一种设置,其中已更换测试单元。正确的结果(例如过滤效率)是通过两种替代设置获得的结果的几何平均值。所提出的方法可能看起来很乏味且耗时,但是这样做,实验测量既不受测试气雾剂随时间变化引起的可能误差的影响,也不受管线附件的可能不对称性的影响(阀门,T [U + 05F3] ,连接等)。

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