1845–2016 gridded dataset of monthly precipitation over the upper Adda river basin: a comparison with runoff series

<p>A new high-resolution gridded dataset of 1845–2016 monthly precipitation series for the upper Adda river basin was computed starting from a network of high-quality and homogenised station records covering Adda basin and neighbouring areas and spanning more than two centuries. The long-t...

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Main Authors: A. Crespi, M. Brunetti, M. Maugeri, R. Ranzi, M. Tomirotti
Format: Article
Language:English
Published: Copernicus Publications 2018-08-01
Series:Advances in Science and Research
Online Access:https://www.adv-sci-res.net/15/173/2018/asr-15-173-2018.pdf
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spelling doaj-441d67b1669f45b6a8d0c98793e829552020-11-24T21:58:20ZengCopernicus PublicationsAdvances in Science and Research1992-06281992-06362018-08-011517318110.5194/asr-15-173-20181845–2016 gridded dataset of monthly precipitation over the upper Adda river basin: a comparison with runoff seriesA. Crespi0M. Brunetti1M. Maugeri2M. Maugeri3R. Ranzi4M. Tomirotti5Department of Environmental Science and Policy, Università degli Studi di Milano, Milan, 20133, ItalyInstitute of Atmospheric Sciences and Climate, ISAC-CNR, Bologna, 40129, Italy Department of Environmental Science and Policy, Università degli Studi di Milano, Milan, 20133, ItalyInstitute of Atmospheric Sciences and Climate, ISAC-CNR, Bologna, 40129, Italy DICATAM, Università degli Studi di Brescia, Brescia, 25123, ItalyDICATAM, Università degli Studi di Brescia, Brescia, 25123, Italy<p>A new high-resolution gridded dataset of 1845–2016 monthly precipitation series for the upper Adda river basin was computed starting from a network of high-quality and homogenised station records covering Adda basin and neighbouring areas and spanning more than two centuries. The long-term signal was reconstructed by a procedure based on the anomaly method and consisting in the superimposition of two fields which were computed independently: 1961–1990 monthly climatologies and gridded anomalies. Model accuracy was evaluated by means of station series reconstruction in leave-one-out approach and monthly relative mean absolute errors were found to range between 14&thinsp;% in summer and 24&thinsp;% in winter. Except for the period before the 1870s when station coverage is rather low, reconstruction errors are quite stable. The 1845–2016 monthly areal precipitation series integrated over Adda basin was finally computed. The robustness of this series was evaluated and it was investigated for long-term trend. While no significant trend emerged for precipitation, the analysis performed on 1845–2016 annual runoff values recorded at Lake Como outlet highlighted a negative trend. Runoff decrease is supposed to be mostly due to an increasing role of evapotranspiration linked to temperature increase, which is only partially compensated by the increase in glacier melting rate. In order to test the applicability of the gridded database for the reconstruction of extreme past events, the episode with the highest precipitation in Adda basin series (November 2002) was considered and the corresponding gridded fields of monthly anomalies and precipitation values were evaluated both with actual station density and with station densities corresponding to 1922 and 1882. Even considering 1882 station density, the main spatial patterns are well depicted proving the suitability of anomaly method to deal also with sparse station networks.</p>https://www.adv-sci-res.net/15/173/2018/asr-15-173-2018.pdf
collection DOAJ
language English
format Article
sources DOAJ
author A. Crespi
M. Brunetti
M. Maugeri
M. Maugeri
R. Ranzi
M. Tomirotti
spellingShingle A. Crespi
M. Brunetti
M. Maugeri
M. Maugeri
R. Ranzi
M. Tomirotti
1845–2016 gridded dataset of monthly precipitation over the upper Adda river basin: a comparison with runoff series
Advances in Science and Research
author_facet A. Crespi
M. Brunetti
M. Maugeri
M. Maugeri
R. Ranzi
M. Tomirotti
author_sort A. Crespi
title 1845–2016 gridded dataset of monthly precipitation over the upper Adda river basin: a comparison with runoff series
title_short 1845–2016 gridded dataset of monthly precipitation over the upper Adda river basin: a comparison with runoff series
title_full 1845–2016 gridded dataset of monthly precipitation over the upper Adda river basin: a comparison with runoff series
title_fullStr 1845–2016 gridded dataset of monthly precipitation over the upper Adda river basin: a comparison with runoff series
title_full_unstemmed 1845–2016 gridded dataset of monthly precipitation over the upper Adda river basin: a comparison with runoff series
title_sort 1845–2016 gridded dataset of monthly precipitation over the upper adda river basin: a comparison with runoff series
publisher Copernicus Publications
series Advances in Science and Research
issn 1992-0628
1992-0636
publishDate 2018-08-01
description <p>A new high-resolution gridded dataset of 1845–2016 monthly precipitation series for the upper Adda river basin was computed starting from a network of high-quality and homogenised station records covering Adda basin and neighbouring areas and spanning more than two centuries. The long-term signal was reconstructed by a procedure based on the anomaly method and consisting in the superimposition of two fields which were computed independently: 1961–1990 monthly climatologies and gridded anomalies. Model accuracy was evaluated by means of station series reconstruction in leave-one-out approach and monthly relative mean absolute errors were found to range between 14&thinsp;% in summer and 24&thinsp;% in winter. Except for the period before the 1870s when station coverage is rather low, reconstruction errors are quite stable. The 1845–2016 monthly areal precipitation series integrated over Adda basin was finally computed. The robustness of this series was evaluated and it was investigated for long-term trend. While no significant trend emerged for precipitation, the analysis performed on 1845–2016 annual runoff values recorded at Lake Como outlet highlighted a negative trend. Runoff decrease is supposed to be mostly due to an increasing role of evapotranspiration linked to temperature increase, which is only partially compensated by the increase in glacier melting rate. In order to test the applicability of the gridded database for the reconstruction of extreme past events, the episode with the highest precipitation in Adda basin series (November 2002) was considered and the corresponding gridded fields of monthly anomalies and precipitation values were evaluated both with actual station density and with station densities corresponding to 1922 and 1882. Even considering 1882 station density, the main spatial patterns are well depicted proving the suitability of anomaly method to deal also with sparse station networks.</p>
url https://www.adv-sci-res.net/15/173/2018/asr-15-173-2018.pdf
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