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Using depolarization to quantify ice nucleating particle concentrations: a new method

机译:使用去极化来量化冰核颗粒浓度:一种新方法

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摘要

We have developed a new method to determine ice nucleating particle (INP) concentrations observed by the Texas A&M University continuous flow diffusion chamber (CFDC) under a wide range of operating conditions. In this study, we evaluate differences in particle optical properties detected by the Cloud and Aerosol Spectrometer with POLarization (CASPOL) to differentiate between ice crystals, droplets, and aerosols. The depolarization signal from the CASPOL instrument is used to determine the occurrence of water droplet breakthrough (WDBT) conditions in the CFDC. The standard procedure for determining INP concentration is to count all particles that have grown beyond a nominal size cutoff as ice crystals. During WDBT this procedure overestimates INP concentration, because large droplets are miscounted as ice crystals. Here we design a new analysis method based on depolarization ratio that can extend the range of operating conditions of the CFDC. The method agrees reasonably well with the traditional method under non-WDBT conditions with a mean percent error of +/- 32.1 %. Additionally, a comparison with the Colorado State University CFDC shows that the new analysis method can be used reliably during WDBT conditions.
机译:我们开发了一种在各种操作条件下确定德克萨斯A&M大学连续流动扩散室(CFDC)观察到冰成核颗粒(INP)浓度的新方法。在该研究中,我们评估云和气溶胶光谱仪与极化(Caspol)检测到的颗粒光学性质的差异,以区分冰晶,液滴和气溶胶。来自CASPOL仪器的去极化信号用于确定CFDC中的水滴突破(WDBT)条件的发生。确定INP浓度的标准程序是将所有颗粒的算在于冰晶的标称尺寸截止的所有颗粒。在WDBT期间,该程序高估INP浓度,因为大型液滴被误用作冰晶。在这里,我们设计了一种基于去极化比的新分析方法,可以延长CFDC的运行条件范围。该方法与非WDBT条件下的传统方法相当好,平均百分比+/- 32.1%。此外,与科罗拉多州立大学CFDC的比较表明,可以在WDBT条件下可靠地使用新的分析方法。

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