Short-range solar radiation forecasts over Sweden

In this article the performance for short-range solar radiation forecasts by the global deterministic and ensemble models from the European Centre for Medium-Range Weather Forecasts (ECMWF) is compared with an ensemble of the regional mesoscale model HARMONIE-AROME used by the national meteorolog...

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Main Authors: T. Landelius, M. Lindskog, H. Körnich, S. Andersson
Format: Article
Language:English
Published: Copernicus Publications 2018-04-01
Series:Advances in Science and Research
Online Access:https://www.adv-sci-res.net/15/39/2018/asr-15-39-2018.pdf
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spelling doaj-05ca6ae4b6d04439b7ff9b2ec63970fe2020-11-24T21:24:35ZengCopernicus PublicationsAdvances in Science and Research1992-06281992-06362018-04-0115394410.5194/asr-15-39-2018Short-range solar radiation forecasts over SwedenT. Landelius0M. Lindskog1H. Körnich2S. Andersson3SMHI, Folkborgsvägen 17, 601 76 Norrköping, SwedenSMHI, Folkborgsvägen 17, 601 76 Norrköping, SwedenSMHI, Folkborgsvägen 17, 601 76 Norrköping, SwedenSMHI, Folkborgsvägen 17, 601 76 Norrköping, SwedenIn this article the performance for short-range solar radiation forecasts by the global deterministic and ensemble models from the European Centre for Medium-Range Weather Forecasts (ECMWF) is compared with an ensemble of the regional mesoscale model HARMONIE-AROME used by the national meteorological services in Sweden, Norway and Finland. Note however that only the control members and the ensemble means are included in the comparison. The models resolution differs considerably with 18 km for the ECMWF ensemble, 9 km for the ECMWF deterministic model, and 2.5 km for the HARMONIE-AROME ensemble.</p><p>The models share the same radiation code. It turns out that they all underestimate systematically the Direct Normal Irradiance (DNI) for clear-sky conditions. Except for this shortcoming, the HARMONIE-AROME ensemble model shows the best agreement with the distribution of observed Global Horizontal Irradiance (GHI) and DNI values. During mid-day the HARMONIE-AROME ensemble mean performs best. The control member of the HARMONIE-AROME ensemble also scores better than the global deterministic ECMWF model. This is an interesting result since mesoscale models have so far not shown good results when compared to the ECMWF models.</p><p>Three days with clear, mixed and cloudy skies are used to illustrate the possible added value of a probabilistic forecast. It is shown that in these cases the mesoscale ensemble could provide decision support to a grid operator in terms of forecasts of both the amount of solar power and its probabilities.https://www.adv-sci-res.net/15/39/2018/asr-15-39-2018.pdf
collection DOAJ
language English
format Article
sources DOAJ
author T. Landelius
M. Lindskog
H. Körnich
S. Andersson
spellingShingle T. Landelius
M. Lindskog
H. Körnich
S. Andersson
Short-range solar radiation forecasts over Sweden
Advances in Science and Research
author_facet T. Landelius
M. Lindskog
H. Körnich
S. Andersson
author_sort T. Landelius
title Short-range solar radiation forecasts over Sweden
title_short Short-range solar radiation forecasts over Sweden
title_full Short-range solar radiation forecasts over Sweden
title_fullStr Short-range solar radiation forecasts over Sweden
title_full_unstemmed Short-range solar radiation forecasts over Sweden
title_sort short-range solar radiation forecasts over sweden
publisher Copernicus Publications
series Advances in Science and Research
issn 1992-0628
1992-0636
publishDate 2018-04-01
description In this article the performance for short-range solar radiation forecasts by the global deterministic and ensemble models from the European Centre for Medium-Range Weather Forecasts (ECMWF) is compared with an ensemble of the regional mesoscale model HARMONIE-AROME used by the national meteorological services in Sweden, Norway and Finland. Note however that only the control members and the ensemble means are included in the comparison. The models resolution differs considerably with 18 km for the ECMWF ensemble, 9 km for the ECMWF deterministic model, and 2.5 km for the HARMONIE-AROME ensemble.</p><p>The models share the same radiation code. It turns out that they all underestimate systematically the Direct Normal Irradiance (DNI) for clear-sky conditions. Except for this shortcoming, the HARMONIE-AROME ensemble model shows the best agreement with the distribution of observed Global Horizontal Irradiance (GHI) and DNI values. During mid-day the HARMONIE-AROME ensemble mean performs best. The control member of the HARMONIE-AROME ensemble also scores better than the global deterministic ECMWF model. This is an interesting result since mesoscale models have so far not shown good results when compared to the ECMWF models.</p><p>Three days with clear, mixed and cloudy skies are used to illustrate the possible added value of a probabilistic forecast. It is shown that in these cases the mesoscale ensemble could provide decision support to a grid operator in terms of forecasts of both the amount of solar power and its probabilities.
url https://www.adv-sci-res.net/15/39/2018/asr-15-39-2018.pdf
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AT mlindskog shortrangesolarradiationforecastsoversweden
AT hkornich shortrangesolarradiationforecastsoversweden
AT sandersson shortrangesolarradiationforecastsoversweden
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