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GROMOS-C, a novel ground-based microwave radiometer for ozone measurement campaigns

机译:GROMOS-C,一种用于臭氧测量活动的新型地面微波辐射仪

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摘要

Stratospheric ozone is of major interest as it absorbs most harmful UV radiation from the sun, allowing life on Earth. Ground-based microwave remote sensing is the only method that allows for the measurement of ozone profiles up to the mesopause, over 24 hours and under different weather conditions with high time resolution.ud In this paper a novel ground-based microwave radiometer is presented. It is called GROMOS-C (GRound based Ozone MOnitoring System for Campaigns), and it has been designed to measure the vertical profile of ozone distribution in the middle atmosphere by observing ozone emission spectra at a frequency of 110.836 GHz. The instrument is designed in a compact way which makes it transportable and suitable for outdoor use in campaigns, an advantageous feature that is lacking in present day ozone radiometers. It is operated through remote control.ud GROMOS-C is a total power radiometer which uses a pre-amplified heterodyne receiver, and a digital fast Fourier transform spectrometer for the spectral analysis. Among its main new features, the incorporation of different calibration loads stands out; this includes a noise diode and a new type of blackbody target specifically designed for this instrument, based on Peltier elements. The calibration scheme does not depend on the use of liquid nitrogen; therefore GROMOS-C can be operated at remote places with no maintenance requirements. In addition, the instrument can be switched in frequency to observe the CO line at 115 GHz.ud A description of the main characteristics of GROMOS-C is included in this paper, as well as the results of a first campaign at the High Altitude Research Station at Jungfraujoch (HFSJ), Switzerland. The validation is performed by comparison of the retrieved profiles against equivalent profiles from MLS (Microwave Limb Sounding) satellite data, ECMWF (European Centre for Medium-Range Weather Forecast) model data, as well as our nearby NDACC (Network for the Detection of Atmospheric Composition Change) ozone radiometer measuring at Bern.
机译:平流层臭氧受到人们的极大关注,因为它吸收了太阳中最有害的紫外线,从而使地球上有生命。基于地面的微波遥感技术是唯一可以在长达24小时内,在不同天气条件下以高时间分辨率测量直至中绝经期臭氧剖面的方法。 ud本文提出了一种新颖的基于地面的微波辐射计。它被称为GROMOS-C(用于运动的基于地面的臭氧监测系统),其设计目的是通过观察110.836 GHz频率的臭氧发射光谱来测量中层大气中臭氧分布的垂直分布。该仪器设计紧凑,可运输,适合户外运动,这是当今臭氧辐射计所缺乏的一项有利功能。它是通过远程控制来操作的。 ROM GROMOS-C是一种总功率辐射计,它使用预放大的外差接收器和数字快速傅里叶变换光谱仪进行光谱分析。在其主要的新功能中,引入了不同的校准负载;其中包括一个噪声二极管和一种专门为该仪器设计的基于Peltier元件的新型黑体靶。校准方案不依赖于液氮的使用。因此,GROMOS-C可以在没有维护要求的偏远地区操作。此外,可以对仪器进行频率切换,以观察115 GHz处的CO线。 ud本文介绍了GROMOS-C的主要特征,以及在高海拔地区的首次攻势的结果。瑞士少女峰(HFSJ)研究站。通过将检索到的剖面与来自MLS(微波肢体探测)卫星数据,ECMWF(欧洲中距离天气预报中心)模型数据以及我们附近的NDACC(大气探测网络)的等效剖面进行比较来进行验证。成分变化)臭氧辐射计在伯尔尼测量。

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