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Dual-channel photoacoustic hygrometer for airborne measurements: background, calibration, laboratory and in-flight intercomparison tests

机译:用于机载测量的双通道光声湿度计:背景,校准,实验室和飞行中的比对测试

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This paper describes a tunable diode laser-based dual-channel photoacoustic (PA) humidity measuring system primarily designed for aircraft-based environment research. It is calibrated for total pressure and water vapor (WV) volume mixing ratios (VMRs) possible during airborne applications. WV VMR is calculated by using pressure-dependent calibration curves and a cubic spline interpolation method. Coverage of the entire atmospheric humidity concentration range that might be encountered during airborne measurements is facilitated by applying an automated sensitivity mode switching algorithm. The calibrated PA system was validated through laboratory and airborne intercomparisons, which proved that the repeatability, the estimated accuracy and the response time of the system are 0.5 ppmV or 0.5% of the actual reading (whichever value is the greater), 5% of the actual reading within the VMR range of 1a??12 000 ppmV and 2 s, respectively. The upper detection limit of the system is theoretically about 85 000 ppmV, limited only by condensation of water vapor on the walls of the 318 K heated PA cells and inlet lines, and was experimentally verified up to 20 000 ppmV. The unique advantage of the presented system is its applicability for simultaneous water vapor and total water volume mixing ratio measurements.
机译:本文介绍了一种主要基于飞机环境研究的基于可调谐二极管激光器的双通道光声(PA)湿度测量系统。它针对机载应用中可能出现的总压力和水蒸气(WV)体积混合比(VMR)进行了校准。通过使用压力相关的校准曲线和三次样条插值方法来计算WV VMR。通过应用自动灵敏度模式切换算法,可以简化机载测量过程中可能遇到的整个大气湿度浓度范围。校准后的PA系统通过实验室和空中比较进行了验证,证明了系统的重复性,估计的准确性和响应时间为0.5 ppmV或实际读数的0.5%(以数值较大者为准),为系统读数的5%。 VMR范围分别为1a ?? 12 000 ppmV和2 s时的实际读数。该系统的检测上限理论上约为85 000 ppmV,仅受水蒸气在318 K加热的PA电池和入口管线壁上的凝结所限制,并且已通过实验验证达到20000 ppmV。所提出的系统的独特优势是其适用于同时测量水蒸气和总水体积混合比。

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