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  3. Diurnal Cycle in Atmospheric Water over Switzerland

Diurnal Cycle in Atmospheric Water over Switzerland

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DOI
10.7892/boris.113010
Publisher DOI
10.3390/rs9090909
Abstract
The TROpospheric WAter RAdiometer (TROWARA) is a ground-based microwave
radiometer with an additional infrared channel observing atmospheric water parameters in Bern, Switzerland. TROWARA measures with nearly all-weather capability during day- and nighttime with a high temporal resolution (about 10 s). Using the almost complete data set from 2004 to 2016, we derive and discuss the diurnal cycles in cloud fraction (CF), integrated liquid water (ILW) and integrated water vapour (IWV) for different seasons and the annual mean. The amplitude of the mean diurnal cycle in IWV is 0.41 kg/m². The sub-daily minimum of IWV is at 10:00 LT while the maximum of IWV occurs at 19:00 LT. The relative amplitudes of the diurnal cycle in ILW are up to 25% in October, November and January, which is possibly related to a breaking up of the cloud layer at 10:00 LT. The minimum of ILW occurs at 12:00 LT, which is due to cloud solar absorption. In case of cloud fraction of liquid water clouds, maximal values of +10% are reached at 07:00 LT and then a decrease starts towards the minimum of -10%, which is reached at 16:00 LT in autumn. This breakup of cloud layers in the late morning and early afternoon hours seems to be typical for the weather in Bern in autumn. Finally, the diurnal cycle in rain fraction is analysed, which shows an increase of a few percent in the late afternoon hours during summer.
Date Issued
2017
Publication Type
Article
Subject(s)
600 Technology > 620 Engineering
Language(s)
en
Author(s)
Hocke, Klemens  
Institut für angewandte Physik (IAP)  
Navas-Guzmán, Francisco
Moreira Méndez, Lorena  
Institut für angewandte Physik (IAP)  
Bernet, Leonie Anna Luisa  
Institut für angewandte Physik (IAP)  
Mätzler, Christian  
Emeriti, Phil.-nat. Fakultät  
Additional Credits
Institut für angewandte Physik (IAP)  
Emeriti, Phil.-nat. Fakultät  
Journal
Remote sensing
Publisher
MDPI
ISSN
2072-4292
Access(Rights)
open.access
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