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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Measurements of low amounts of precipitable water vapor by millimeter wave spectroscopy: An intercomparison with radiosonde, Raman lidar, and Fourier transform infrared data
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Measurements of low amounts of precipitable water vapor by millimeter wave spectroscopy: An intercomparison with radiosonde, Raman lidar, and Fourier transform infrared data

机译:测量低数量的可沉淀的水蒸汽通过毫米波光谱学:一个相互比较与无线电探空仪、拉曼激光雷达傅里叶变换红外数据

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Observations of very low amounts of precipitable water vapor (PWV) by means of the Ground-Based Millimeter wave Spectrometer (GBMS) are discussed. Low amounts of column water vapor (between 0.5 and 4 mm) are typical of high mountain sites and polar regions, especially during winter, and are difficult to measure accurately because of the lack of sensitivity of conventional instruments to such low PWV contents. The technique used involves the measurement of atmospheric opacity in the range between 230 and 280 GHz with a spectral resolution of 4 GHz, followed by the conversion to precipitable water vapor using a linear relationship. We present the intercomparison of this data set with simultaneous PWV observations obtained with Vaisala RS92k radiosondes, a Raman lidar, and an IR Fourier transform spectrometer. These sets of measurements were carried out during the primary field campaign of the Earth Cooling by Water vapor Radiation (ECOWAR) project which took place at Breuil-Cervinia (45.9°N, 7.6°E, elevation 1990 m) and Plateau Rosa (45.9°N, 7.7°E, elevation 3490 m), Italy, from 3 to 16 March 2007. GBMS PWV measurements show a good agreement with the other three data sets exhibiting a mean difference between observations of 9%. The considerable number of data points available for the GBMS versus lidar PWV correlation allows an additional analysis which indicates negligible systematic differences between the two data sets.
机译:观察的可沉淀的量很低水蒸气通过地面(采集)毫米波光谱仪(本研究)进行了讨论。(0.5到4毫米)是典型的高山网站和极地地区,特别是在冬天,是很难衡量的准确地因为缺乏敏感性传统仪器如此低的采集内容。测量大气透明度的范围在230年和280年之间GHz光谱解决4 GHz,紧随其后的是转换使用一个线性可沉淀的水蒸气的关系。这与同步采集的观测数据集拉曼得到Vaisala RS92k无线电探空仪激光雷达和红外傅里叶变换光谱仪。这组数据在地球的主要领域活动水蒸气冷却辐射(ECOWAR)项目这发生在Breuil-Cervinia(45.9°N,7.6°E,海拔1990米)和高原罗莎(45.9°N, 7.7°E,海拔3490米),意大利,从32007年3月16日。良好的协议与其他三个数据集表现出平均观测之间的区别的9%。本研究对激光雷达采集相关允许一个额外的分析表明微不足道的系统差异两个数据集之间的。

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