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Raman lidar in operational meteorology

机译:Raman Lidar在操作气象学

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摘要

Water vapor and temperature spatial distribution and their temporal evolution are among the most important parameters in numerical weather forecasting and climate models. The operational relative humidity/temperature profiling in meteorology is carried out mostly by radio sondes. Sondes provide profiles with high vertical resolution but suffer from systematic errors and low temporal resolution. The temporal resolution is also a limitation for the now-casting, which has become more and more important for meteorological alerts and for the aviation. Recently, some of national meteorological services have introduced Raman lidars for additional operational humidity/temperature profiling. The lidars allow monitoring of water vapor mixing ratio and temperature with high vertical and temporal resolutions. Here the design and measurement results from the Raman Lidar for Meteorological Observation (RALMO) developed by the Ecole Polytechnique Féderal de Lausanne (EPFL) and operated by MeteoSwiss is presented as an illustration of the potential of Raman lidars in operational meteorology. The first applications of lidar data in numerical weather forecasting is also discussed.
机译:水蒸气和温度空间分布及其时间进化是数值天气预报和气候模型中最重要的参数之一。气象中的操作相对湿度/温度分析主要由无线电探测器进行。 Sondes提供具有高垂直分辨率的配置文件,但遭受系统误差和低时间分辨率。时间分辨率也是对现在铸造的限制,这对气象警报和航空变得越来越重要。最近,一些国家气象服务引入了拉曼利坎缘以进行额外的运营湿度/温度分析。 LIDARS允许使用高垂直和时间分辨率监测水蒸气混合比和温度。在这里,由Ecole PolytechniqueFéderaldeLausanne(EPFL)开发的气象观测(RALMO)的设计和测量结果由Meteoswiss开发并被Meteoswiss操作作为操作气象中拉曼激光器的潜力的说明。还讨论了LIDAR数据的第一个应用。

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