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Hydrology and Earth System Sciences An interactive open-access journal of the European Geosciences Union
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Volume 19, issue 3
Hydrol. Earth Syst. Sci., 19, 1547–1559, 2015
https://doi.org/10.5194/hess-19-1547-2015
© Author(s) 2015. This work is distributed under
the Creative Commons Attribution 3.0 License.
Hydrol. Earth Syst. Sci., 19, 1547–1559, 2015
https://doi.org/10.5194/hess-19-1547-2015
© Author(s) 2015. This work is distributed under
the Creative Commons Attribution 3.0 License.

Research article 26 Mar 2015

Research article | 26 Mar 2015

Evaluation of high-resolution precipitation analyses using a dense station network

A. Kann et al.
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Cited articles  
Atlas, D., Ulbrich, C. W., Marks Jr., F. D., Amitai, E., and Williams, C. R.: Systematic variation of drop size and radar-rainfall relation, J. Geophys. Res., 104, 6155–6169, 1999.
Austin, P. M.: Relation between Measured Radar Reflectivity and Surface Rainfall, Mon. Weather Rev., 115, 1053–1070, 1987.
Chumchean, S., Sharma, A., and Seed, A.: An Integrated Approach to Error Correction for Real-Time Radar-Rainfall Estimation, J. Atmos. Ocean. Technol., 23, 67–79, 2006.
Foote, G. B.: A Z-R relation for mountain thunderstorms, J. Appl. Meteorol., 2, 229–231, 1966.
Golding, B. W.: Nimrod: A system for generating automated very short range forecasts, Meteorol. Appl., 5, 1–16, 1998.
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The paper introduces a high resolution precipitation analysis system which operates on 1 km x 1 km resolution with high frequency updates of 5 minutes. The ability of such a system to adequately assess the convective precipitation distribution is evaluated by means of an independant, high resolution station network. This dense station network allows for a thorough evaluation of the analyses under different convective situations and of the representativeness error of raingaue measurements.
The paper introduces a high resolution precipitation analysis system which operates on 1 km x 1...
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