Holve D, Self S A
Appl Opt. 1979 May 15;18(10):1646-52. doi: 10.1364/AO.18.001646.
This paper is Part 2 of a two-part sequence describing an in situ particle sizing counter. Part 2 discusses experimental measurements in both ambient and combustion temperature conditions. Ambient temperature measurements are obtained using a well-characterized mixture of monodispersions of known size and concentration. The amplitude data are unfolded by the technique described in Part 1, and number density vs particle diameter results are compared with the known input mixture of four monodispersions. An analysis of error propagation in the inversion scheme is presented. For combustion conditions, known mixtures of silica beads in the 1-30-microm range are injected into a small burner, and measurements by the particle counter are shown to reproduce satisfactorily the input size distribution of the glass bead polydispersion. The paper concludes with an assessment of potential applications of the counter to high number density, absorbing, and irregular aerosols.
本文是关于原位颗粒尺寸计数器的两篇系列论文的第二部分。第二部分讨论了在环境温度和燃烧温度条件下的实验测量。环境温度测量是使用已知尺寸和浓度的单分散体的特征明确的混合物进行的。振幅数据通过第一部分中描述的技术展开,并将数密度与粒径的结果与四种单分散体的已知输入混合物进行比较。给出了反演方案中的误差传播分析。对于燃烧条件,将1-30微米范围内的已知二氧化硅珠混合物注入小型燃烧器中,颗粒计数器的测量结果显示能够令人满意地再现玻璃珠多分散体的输入尺寸分布。本文最后评估了该计数器在高数量密度、吸收性和不规则气溶胶方面的潜在应用。