Assimilating aircraft-based measurements to improve forecast accuracy of volcanic ash transport:

The 2010 Eyjafjallajökull volcano eruption had serious consequences to civil aviation. This has initiated a lot of research on volcanic ash transport forecast in recent years. For forecasting the volcanic ash transport after eruption onset, a volcanic ash transport and diffusion model (VATDM) needs...

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Main Authors: Fu, G., Lin, H.X., Heemink, A.W., Segers, A.J., Lu, S., Palsson, T.
Format: Article in Journal/Newspaper
Language:English
Published: Elsevier Ltd 2015
Subjects:
Online Access:http://resolver.tudelft.nl/uuid:df9a6924-1237-41f5-8da9-d88cf302c162
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author Fu, G.
Lin, H.X.
Heemink, A.W.
Segers, A.J.
Lu, S.
Palsson, T.
author_facet Fu, G.
Lin, H.X.
Heemink, A.W.
Segers, A.J.
Lu, S.
Palsson, T.
author_sort Fu, G.
collection TU Delft: Institutional Repository (Delft University of Technology)
description The 2010 Eyjafjallajökull volcano eruption had serious consequences to civil aviation. This has initiated a lot of research on volcanic ash transport forecast in recent years. For forecasting the volcanic ash transport after eruption onset, a volcanic ash transport and diffusion model (VATDM) needs to be run with Eruption Source Parameters (ESP) such as plume height and mass eruption rate as input, and with data assimilation techniques to continuously improve the initial conditions of the forecast. Reliable and accurate ash measurements are crucial for providing a successful ash clouds advice. In this paper, simulated aircraft-based measurements, as one type of volcanic ash measurements, will be assimilated into a transport model to identify the potential benefit of this kind of observations in an assimilation system. The results show assimilating aircraft-based measurements can significantly improve the state of ash clouds, and further providing an improved forecast as aviation advice. We also show that for advice of aeroplane flying level, aircraft-based measurements should be preferably taken from this level to obtain the best performance on it. Furthermore it is shown that in order to make an acceptable advice for aviation decision makers, accurate knowledge about uncertainties of ESPs and measurements is of great importance. © 2015 Elsevier Ltd.
format Article in Journal/Newspaper
genre Eyjafjallajökull
genre_facet Eyjafjallajökull
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op_source Atmospheric Environment, 115, 170-184
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spelling fttno:oai:tudelft.nl:uuid:df9a6924-1237-41f5-8da9-d88cf302c162 2025-01-16T21:47:55+00:00 Assimilating aircraft-based measurements to improve forecast accuracy of volcanic ash transport: Fu, G. Lin, H.X. Heemink, A.W. Segers, A.J. Lu, S. Palsson, T. 2015-01-01 http://resolver.tudelft.nl/uuid:df9a6924-1237-41f5-8da9-d88cf302c162 en eng Elsevier Ltd uuid:df9a6924-1237-41f5-8da9-d88cf302c162 527793 http://resolver.tudelft.nl/uuid:df9a6924-1237-41f5-8da9-d88cf302c162 Atmospheric Environment, 115, 170-184 Environment Volcanic ash forecast Aircraft-based measurements Data assimilation Uncertainties Environment & Sustainability Urbanisation Urban Mobility & Environment CAS - Climate Air and Sustainability ELSS - Earth Life and Social Sciences article 2015 fttno 2022-04-10T16:10:32Z The 2010 Eyjafjallajökull volcano eruption had serious consequences to civil aviation. This has initiated a lot of research on volcanic ash transport forecast in recent years. For forecasting the volcanic ash transport after eruption onset, a volcanic ash transport and diffusion model (VATDM) needs to be run with Eruption Source Parameters (ESP) such as plume height and mass eruption rate as input, and with data assimilation techniques to continuously improve the initial conditions of the forecast. Reliable and accurate ash measurements are crucial for providing a successful ash clouds advice. In this paper, simulated aircraft-based measurements, as one type of volcanic ash measurements, will be assimilated into a transport model to identify the potential benefit of this kind of observations in an assimilation system. The results show assimilating aircraft-based measurements can significantly improve the state of ash clouds, and further providing an improved forecast as aviation advice. We also show that for advice of aeroplane flying level, aircraft-based measurements should be preferably taken from this level to obtain the best performance on it. Furthermore it is shown that in order to make an acceptable advice for aviation decision makers, accurate knowledge about uncertainties of ESPs and measurements is of great importance. © 2015 Elsevier Ltd. Article in Journal/Newspaper Eyjafjallajökull TU Delft: Institutional Repository (Delft University of Technology)
spellingShingle Environment
Volcanic ash forecast
Aircraft-based measurements
Data assimilation
Uncertainties
Environment & Sustainability
Urbanisation
Urban Mobility & Environment
CAS - Climate
Air and Sustainability
ELSS - Earth
Life and Social Sciences
Fu, G.
Lin, H.X.
Heemink, A.W.
Segers, A.J.
Lu, S.
Palsson, T.
Assimilating aircraft-based measurements to improve forecast accuracy of volcanic ash transport:
title Assimilating aircraft-based measurements to improve forecast accuracy of volcanic ash transport:
title_full Assimilating aircraft-based measurements to improve forecast accuracy of volcanic ash transport:
title_fullStr Assimilating aircraft-based measurements to improve forecast accuracy of volcanic ash transport:
title_full_unstemmed Assimilating aircraft-based measurements to improve forecast accuracy of volcanic ash transport:
title_short Assimilating aircraft-based measurements to improve forecast accuracy of volcanic ash transport:
title_sort assimilating aircraft-based measurements to improve forecast accuracy of volcanic ash transport:
topic Environment
Volcanic ash forecast
Aircraft-based measurements
Data assimilation
Uncertainties
Environment & Sustainability
Urbanisation
Urban Mobility & Environment
CAS - Climate
Air and Sustainability
ELSS - Earth
Life and Social Sciences
topic_facet Environment
Volcanic ash forecast
Aircraft-based measurements
Data assimilation
Uncertainties
Environment & Sustainability
Urbanisation
Urban Mobility & Environment
CAS - Climate
Air and Sustainability
ELSS - Earth
Life and Social Sciences
url http://resolver.tudelft.nl/uuid:df9a6924-1237-41f5-8da9-d88cf302c162