Global meteorological drought – Part 2: Seasonal forecasts

Global seasonal forecasts of meteorological drought using the standardized precipitation index (SPI) are produced using two data sets as initial conditions: the Global Precipitation Climatology Centre (GPCC) and the European Centre for Medium-Range Weather Forecasts (ECMWF) ERA-Interim reanalysis (E...

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Main Authors: E. Dutra, W. Pozzi, F. Wetterhall, F. Di Giuseppe, L. Magnusson, G. Naumann, P. Barbosa, J. Vogt, F. Pappenberger
Format: Article
Language:English
Published: Copernicus Publications 2014-07-01
Series:Hydrology and Earth System Sciences
Online Access:http://www.hydrol-earth-syst-sci.net/18/2669/2014/hess-18-2669-2014.pdf
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spelling doaj-051e7312c80a4a8db6b421adba76e8a02020-11-24T20:59:47ZengCopernicus PublicationsHydrology and Earth System Sciences1027-56061607-79382014-07-011872669267810.5194/hess-18-2669-2014Global meteorological drought – Part 2: Seasonal forecastsE. Dutra0W. Pozzi1F. Wetterhall2F. Di Giuseppe3L. Magnusson4G. Naumann5P. Barbosa6J. Vogt7F. Pappenberger8European Centre for Medium-Range Weather Forecasts, Reading, UKGroup on Earth Observations, Geneva, SwitzerlandEuropean Centre for Medium-Range Weather Forecasts, Reading, UKEuropean Centre for Medium-Range Weather Forecasts, Reading, UKEuropean Centre for Medium-Range Weather Forecasts, Reading, UKEuropean Commission, Joint Research Centre, Institute for Environment and Sustainability, Ispra, ItalyEuropean Commission, Joint Research Centre, Institute for Environment and Sustainability, Ispra, ItalyEuropean Commission, Joint Research Centre, Institute for Environment and Sustainability, Ispra, ItalyEuropean Centre for Medium-Range Weather Forecasts, Reading, UKGlobal seasonal forecasts of meteorological drought using the standardized precipitation index (SPI) are produced using two data sets as initial conditions: the Global Precipitation Climatology Centre (GPCC) and the European Centre for Medium-Range Weather Forecasts (ECMWF) ERA-Interim reanalysis (ERAI); and two seasonal forecasts of precipitation, the most recent ECMWF seasonal forecast system and climatologically based ensemble forecasts. The forecast evaluation focuses on the periods where precipitation deficits are likely to have higher drought impacts, and the results were summarized over different regions in the world. The verification of the forecasts with lead time indicated that generally for all regions the least reduction on skill was found for (i) long lead times using ERAI or GPCC for monitoring and (ii) short lead times using ECMWF or climatological seasonal forecasts. The memory effect of initial conditions was found to be 1 month of lead time for the SPI-3, 4 months for the SPI-6 and 6 (or more) months for the SPI-12. Results show that dynamical forecasts of precipitation provide added value with skills at least equal to and often above that of climatological forecasts. Furthermore, it is very difficult to improve on the use of climatological forecasts for long lead times. Our results also support recent questions of whether seasonal forecasting of global drought onset was essentially a stochastic forecasting problem. Results are presented regionally and globally, and our results point to several regions in the world where drought onset forecasting is feasible and skilful.http://www.hydrol-earth-syst-sci.net/18/2669/2014/hess-18-2669-2014.pdf
collection DOAJ
language English
format Article
sources DOAJ
author E. Dutra
W. Pozzi
F. Wetterhall
F. Di Giuseppe
L. Magnusson
G. Naumann
P. Barbosa
J. Vogt
F. Pappenberger
spellingShingle E. Dutra
W. Pozzi
F. Wetterhall
F. Di Giuseppe
L. Magnusson
G. Naumann
P. Barbosa
J. Vogt
F. Pappenberger
Global meteorological drought – Part 2: Seasonal forecasts
Hydrology and Earth System Sciences
author_facet E. Dutra
W. Pozzi
F. Wetterhall
F. Di Giuseppe
L. Magnusson
G. Naumann
P. Barbosa
J. Vogt
F. Pappenberger
author_sort E. Dutra
title Global meteorological drought – Part 2: Seasonal forecasts
title_short Global meteorological drought – Part 2: Seasonal forecasts
title_full Global meteorological drought – Part 2: Seasonal forecasts
title_fullStr Global meteorological drought – Part 2: Seasonal forecasts
title_full_unstemmed Global meteorological drought – Part 2: Seasonal forecasts
title_sort global meteorological drought – part 2: seasonal forecasts
publisher Copernicus Publications
series Hydrology and Earth System Sciences
issn 1027-5606
1607-7938
publishDate 2014-07-01
description Global seasonal forecasts of meteorological drought using the standardized precipitation index (SPI) are produced using two data sets as initial conditions: the Global Precipitation Climatology Centre (GPCC) and the European Centre for Medium-Range Weather Forecasts (ECMWF) ERA-Interim reanalysis (ERAI); and two seasonal forecasts of precipitation, the most recent ECMWF seasonal forecast system and climatologically based ensemble forecasts. The forecast evaluation focuses on the periods where precipitation deficits are likely to have higher drought impacts, and the results were summarized over different regions in the world. The verification of the forecasts with lead time indicated that generally for all regions the least reduction on skill was found for (i) long lead times using ERAI or GPCC for monitoring and (ii) short lead times using ECMWF or climatological seasonal forecasts. The memory effect of initial conditions was found to be 1 month of lead time for the SPI-3, 4 months for the SPI-6 and 6 (or more) months for the SPI-12. Results show that dynamical forecasts of precipitation provide added value with skills at least equal to and often above that of climatological forecasts. Furthermore, it is very difficult to improve on the use of climatological forecasts for long lead times. Our results also support recent questions of whether seasonal forecasting of global drought onset was essentially a stochastic forecasting problem. Results are presented regionally and globally, and our results point to several regions in the world where drought onset forecasting is feasible and skilful.
url http://www.hydrol-earth-syst-sci.net/18/2669/2014/hess-18-2669-2014.pdf
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