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The Analysis of Results of Remote Sensing Monitoring of the Temperature Profile in Lower Atmosphere in Bergen (Norway)

机译:卑尔根(挪威)下层大气温度遥感监测结果分析

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摘要

Considered is the application of MTP-5 meteorological temperature profiler used for the remote sensing of vertical profiles of the air temperature in the planetary boundary layer and the lower one-kilometer layer of the atmosphere. The measurements were carried out in Bergen (Norway) in 2011-2012. The obtained dataset of temperature profiles has temporal resolution of five minutes and vertical resolution of 50 m. The MTP-5 data are complemented with the measurements of the air temperature and the wind taken at two automatic weather stations and with the measurements of the rain intensity made with the rain radar. Studied is the impact of meteorological conditions and precipitation on the MTP-5 readings. It is revealed that formation of a thin water film (of ice or, to a smaller degree, of sleet) on the surface of the sensor cover of MTP-5 has a significant impact on the data of the temperature monitoring. The removal of intensive precipitation (the precipitation rate is >0.2 mm/hour) improved the reliability and quality of the temperature profile monitoring. In particular, it is demonstrated that significant air pollution and stably stratified atmospheric conditions which lead to low temperatures are reliably monitored with this instrument.
机译:考虑了将MTP-5气象温度廓线仪用于遥感行星边界层和大气下层一公里层的垂直温度廓线的应用。测量于2011-2012年在卑尔根(挪威)进行。所获得的温度剖面数据集具有5分钟的时间分辨率和50 m的垂直分辨率。 MTP-5数据补充了在两个自动气象站获得的空气温度和风的测量值,以及由降雨雷达进行的降雨强度的测量值。研究了气象条件和降水对MTP-5读数的影响。已经发现,在MTP-5的传感器盖表面上形成一层薄水膜(冰或小雨夹雪)对温度监控数据有重大影响。去除强降水(降水速率> 0.2 mm /小时)提高了温度分布监测的可靠性和质量。特别是,已证明使用此仪器可以可靠地监控导致空气低温的严重空气污染和稳定的分层大气条件。

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  • 来源
    《Russian meteorology and hydrology》 |2013年第10期|715-722|共8页
  • 作者单位

    Nansen Environmental and Remote Sensing Center, Thormohlens gate 47, Bergen, 5006 Norway ,Lobachevskii State University of Nizhny Novgorod, pr. Gagarina 23, Nizhny Novgorod, 603950 Russia;

    Nansen Environmental and Remote Sensing Center, Thormohlens gate 47, Bergen, 5006 Norway;

    Central Aerological Observatory, ul. Pervomaiskaya 3, Dolgoprudny, Moscow oblast, 141700 Russia;

    Obukhov Institute of Atmospheric Physics, Russian Academy of Sciences, Pyzhevskii per. 3, Moscow, 119017 Russia ,Russian State Hydrometeorological University, Malookhtinskii pr. 98, St. Peterburg, 195196 Russia;

    Lobachevskii State University of Nizhny Novgorod, pr. Gagarina 23, Nizhny Novgorod, 603950 Russia ,Obukhov Institute of Atmospheric Physics, Russian Academy of Sciences, Pyzhevskii per. 3, Moscow, 119017 Russia ,Institute of Applied Physics, Russian Academy of Sciences, GSP-120, ul. Ul'yanova 46, Nizhny Novgorod, 603950 Russia;

    Lobachevskii State University of Nizhny Novgorod, pr. Gagarina 23, Nizhny Novgorod, 603950 Russia ,Finnish Meteorological Institute, Erik Palmenin aukio 1, Helsinki, 00560 Finland;

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