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Photoacoustic hygrometer for icing wind tunnel water content measurement: design, analysis, and intercomparison

机译:用于结冰风洞水含量测量的光声湿度计:设计,分析和互相

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This work describes the latest design, calibration and application of a near-infrared laser diode-based photoacoustic (PA) hygrometer developed for total water content measurement in simulated atmospheric freezing precipitation and high ice water content conditions with relevance in fundamental icing research, aviation testing, and certification. The single-wavelength and single-pass PA absorption cell is calibrated for molar water vapor fractions with a two-pressure humidity generator integrated into the instrument. Laboratory calibration showed an estimated measurement accuracy better than 3.3 ?% in the water vapor mole fraction range of 510–12?360? ppm ( 5 ?% from 250–21?200? ppm ) with a theoretical limit of detection (3 σ ) of 3.2 ? ppm . The hygrometer is examined in combination with a basic isokinetic evaporator probe (IKP) and sampling system designed for icing wind tunnel applications, for which a general description of total condensed water content (CWC) measurements and uncertainties are presented. Despite the current limitation of the IKP to a hydrometeor mass flux below 90 ? g m - 2 s - 1 , a CWC measurement accuracy better than 20 ?% is achieved by the instrument above a CWC of 0.14 ? g?m ?3 in cold air ( ?30 ? ° C) with suitable background humidity measurement. Results of a comparison to the Cranfield University IKP instrument in freezing drizzle and rain show a CWC agreement of the two instruments within 20 ?%, which demonstrates the potential of PA hygrometers for water content measurement in atmospheric icing conditions.
机译:这项工作描述了在模拟大气冷冻沉淀和高冰水含量条件下为总水含量测量而开发的近红外激光二极管的光通声(PA)湿度计的最新设计,校准和应用,具有基本锦冰研究,航空检测和认证。单波长和单通过PA吸收电池用于摩尔水蒸气馏分,其具有集成在仪器中的双压湿度发生器。实验室校准在水蒸气摩尔分数范围为510-12?360的估计测量精度比3.3?%更好。 ppm(5?%从250-21?200?ppm),具有3.2的理论限制(3σ)的理论极限? PPM。湿度计与基本的等动力蒸发器探针(IKP)和设计用于结冰风洞应用的采样系统,其中提出了总凝聚水含量(CWC)测量和不确定性的一般描述。尽管电流限制了IKP到90以下的水力仪质量磁通量? G M-2 S-1,CWC测量精度优于20倍,通过0.14的CWC以上的仪器实现了0.14 g?m?3在冷空气(α30≤c)中,具有合适的背景湿度测量。克兰菲尔德大学IKP仪器在冻结毛毛雨和雨中的比较结果显示了20个乐器的CWC协议,其中包括20?%的两种仪器,这证明了PA湿度计在大气糖霜条件下进行含水量测量的潜力。

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