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Evaluation of precipitation datasets against local observations in southwestern Iran

Fallah, AliORCIDiD
Rakhshandehroo, Gholam Reza
Berg, Peter
O, SungminORCIDiD
Orth, Rene
DOI: https://doi.org/10.1002/joc.6445
Persistent URL: http://resolver.sub.uni-goettingen.de/purl?gldocs-11858/9274
Fallah, Ali; Rakhshandehroo, Gholam Reza; Berg, Peter; O, Sungmin; Orth, Rene, 2020: Evaluation of precipitation datasets against local observations in southwestern Iran. In: International Journal of Climatology, Band 40, 9: 4102 - 4116, DOI: 10.1002/joc.6445.
 
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  • Abstract
This study provides a comprehensive evaluation of a great variety of state-of-the-art precipitation datasets against gauge observations over the Karun basin in southwestern Iran. In particular, we consider (a) gauge-interpolated datasets (GPCCv8, CRU TS4.01, PREC/L, and CPC-Unified), (b) multi-source products (PERSIANN-CDR, CHIRPS2.0, MSWEP V2, HydroGFD2.0, and SM2RAIN-CCI), and (c) reanalyses (ERA-Interim, ERA5, CFSR, and JRA-55). The spatiotemporal performance of each product is evaluated against monthly precipitation observations from 155 gauges distributed across the basin during the period 2000–2015. This way, we find that overall the GPCCv8 dataset agrees best with the measurements. Most datasets show significant underestimations, which are largest for the interpolated datasets. These underestimations are usually smallest at low altitudes and increase towards more mountainous areas, although there is large spread across the products. Interestingly, no overall performance difference can be found between precipitation datasets for which gauge observations from Karun basin were used, versus products that were derived without these measurements, except in the case of GPCCv8. In general, our findings highlight remarkable differences between state-of-the-art precipitation products over regions with comparatively sparse gauge density, such as Iran. Revealing the best-performing datasets and their remaining weaknesses, we provide guidance for monitoring and modelling applications which rely on high-quality precipitation input.
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  • Geophysik, Extraterrestische Forschung [1122]
Subjects:
evaluation
interpolated dataset
Karun basin
precipitation datasets
reanalysis dataset
satellite rainfall estimate
This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.

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