Articles | Volume 16, issue 11
https://doi.org/10.5194/hess-16-4101-2012
https://doi.org/10.5194/hess-16-4101-2012
Research article
 | 
07 Nov 2012
Research article |  | 07 Nov 2012

Joint statistical correction of clutters, spokes and beam height for a radar derived precipitation climatology in southern Germany

A. Wagner, J. Seltmann, and H. Kunstmann

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Cited articles

Bartels, H., Weigl, E., Reich, T., Lang, P., Wagner, A., Kohler, O., and Gerlach, N.: Projekt RADOLAN – Routineverfahren zur Online-Aneichung der Radarniederschlagsdaten mit Hilfe von automatischen Bodenniederschlagsstationen (Ombrometer), Deutscher Wetterdienst, Hydrometeorologie, 2004.
Fabry, F. and Zawadzki, I.: Long-term radar observations of the melting layer of precipitation and their interpretation, J. Atmos. Sci., 52, 838–851, 1995.
Franco, M., Sanchez-Diezma, R., and Sempere-Torres, D.: Improvements in weather radar rain rate estimates using a method for identifying the vertical profile of reflectivity from volume radar scans, Meteorol. Z., 15, 521–536, 2006.
Haase, G., Gjertsen, U., and Bech, J.: Weather radar data quality in Northern Europe: beam propagation issues, AMS Conference on Radar Meteorology, Albuquerque, Canada, available at: ams.confex.com/ams/pdfpapers/96070.pdf (last access: 4 November 2012), 2005.
Hand, W. H.: An object-oriented technique for nowcasting heavy showers and thunderstorms, Meteorol. Appl., 3, 31–41, 1996.
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