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Absolute accuracy of water vapor measurements from six operational radiosonde types launched during AWEX-G and implications for AIRS validation

机译:绝对的水汽测量数据的准确性6操作期间推出了无线电探空仪类型AWEX-G播出验证和影响

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摘要

A detailed assessment of radiosonde water vapor measurement accuracy throughout the tropospheric column is needed for assessing the impact of observational error on applications that use the radiosonde data as input, such as forecast modeling, radiative transfer calculations, remote sensor retrieval validation, climate trend studies, and development of climatologies and cloud and radiation parameterizations. Six operational radiosonde types were flown together in various combinations with a reference-quality hygrometer during the Atmospheric Infrared Sounder (AIRS) Water Vapor Experiment-Ground (AWEX-G), while simultaneous measurements were acquired from Raman lidar and microwave radiometers. This study determines the mean accuracy and variability of the radiosonde water vapor measurements relative to simultaneous measurements from the University of Colorado (CU) Cryogenic Frostpoint Hygrometer (CFH), a reference-quality standard of known absolute accuracy. The accuracy and performance characteristics of the following radiosonde types are evaluated: Vaisala RS80-H, RS90, and RS92; Sippican Mark IIa; Modem GL98; and the Meteolabor Snow White hygrometer. A validated correction for sensor time lag error is found to improve the accuracy and reduce the variability of upper tropospheric water vapor measurements from the Vaisala radiosondes. The AWEX data set is also used to derive and validate a new empirical correction that improves the mean calibration accuracy of Vaisala measurements by an amount that depends on the temperature, relative humidity, and sensor type. Fully corrected Vaisala radiosonde measurements are found to be suitably accurate for AIRS validation throughout the troposphere, whereas the other radiosonde types are suitably accurate under only a subset of tropospheric conditions. Although this study focuses on the accuracy of nighttime radiosonde measurements, comparison of Vaisala RS90 measurements to water vapor retrievals from a microwave radiometer reveals a 6–8% dry bias in daytime RS90 measurements that is caused by solar heating of the sensor. An AWEX-like data set of daytime measurements is highly desirable to complete the accuracy assessment, ideally from a tropical location where the full range of tropospheric temperatures can be sampled.
机译:无线电探空仪的详细评估水蒸气在整个对流层测量精度列是需要评估的影响观察误差上使用的应用程序无线电探空仪数据作为输入,如预期建模、辐射传输计算,遥远传感器获取验证、气候趋势气候学的研究和发展云辐射参数化。操作无线电探空仪类型飞在一起在各种组合reference-quality在大气红外湿度计测深仪水蒸气Experiment-Ground(播出)(AWEX-G),而同时测量从拉曼激光雷达和微波获得辐射计。无线电探空仪的精度和可变性的水蒸汽测量相对于同步测量从科罗拉多大学(铜)低温Frostpoint湿度计(CFH)reference-quality已知的绝对标准准确性。下列无线电探空仪的类型特征评估:Vaisala RS80-H、RS90 RS92;Sippican马克花絮;白雪公主湿度计。发现改善传感器滞后时间错误准确性和减少上层的可变性对流层水汽测量的Vaisala无线电探空仪。用于推导和验证一个新的经验校正,提高了平均校准Vaisala精度测量的量这取决于温度,相对的湿度,传感器类型。Vaisala无线电探空仪测量发现适当准确的验证在播出对流层,而其他无线电探空仪类型是适当准确的一个子集对流层的状况。专注于夜间无线电探空仪的准确性测量,比较Vaisala RS90测量从一个水蒸气的检索微波辐射计揭示了一个6 - 8%干的偏见白天RS90测量,是由太阳引起的传感器的加热。白天的测量是非常可取的完整的准确评估,从一个理想热带的全部范围的位置对流层温度可以取样。

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