Revealing patterns of nocturnal migration using the European weather radar network

© 2018 The Authors Nocturnal avian migration flyways remain an elusive concept, as we have largely lacked methods to map their full extent. We used the network of European weather radars to investigate nocturnal bird movements at the scale of the European flyway. We mapped the main migration directi...

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Main Authors: Nilsson, C., Dokter, A., Verlinden, L., Shamoun-Baranes, J., Schmid, B., Desmet, P., Bauer, S., Chapman, J., Alves, J., Stepanian, P., Sapir, N., Wainwright, C., Boos, M., Górska, A., Menz, Myles, Rodrigues, P., Leijnse, H., Zehtindjiev, P., Brabant, R., Haase, G., Weisshaupt, N., Ciach, M., Liechti, F.
Format: Journal Article
Published: Blackwell Publishing 2018
Online Access:http://hdl.handle.net/20.500.11937/72409
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author Nilsson, C.
Dokter, A.
Verlinden, L.
Shamoun-Baranes, J.
Schmid, B.
Desmet, P.
Bauer, S.
Chapman, J.
Alves, J.
Stepanian, P.
Sapir, N.
Wainwright, C.
Boos, M.
Górska, A.
Menz, Myles
Rodrigues, P.
Leijnse, H.
Zehtindjiev, P.
Brabant, R.
Haase, G.
Weisshaupt, N.
Ciach, M.
Liechti, F.
author_facet Nilsson, C.
Dokter, A.
Verlinden, L.
Shamoun-Baranes, J.
Schmid, B.
Desmet, P.
Bauer, S.
Chapman, J.
Alves, J.
Stepanian, P.
Sapir, N.
Wainwright, C.
Boos, M.
Górska, A.
Menz, Myles
Rodrigues, P.
Leijnse, H.
Zehtindjiev, P.
Brabant, R.
Haase, G.
Weisshaupt, N.
Ciach, M.
Liechti, F.
author_sort Nilsson, C.
building Curtin Institutional Repository
collection Online Access
description © 2018 The Authors Nocturnal avian migration flyways remain an elusive concept, as we have largely lacked methods to map their full extent. We used the network of European weather radars to investigate nocturnal bird movements at the scale of the European flyway. We mapped the main migration directions and showed the intensity of movement across part of Europe by extracting biological information from 70 weather radar stations from northern Scandinavia to Portugal, during the autumn migration season of 2016. On average, over the 20 nights and all sites, 389 birds passed per 1 km transect per hour. The night with highest migration intensity showed an average of 1621 birds km–1 h–1 passing the radar stations, but there was considerable geographical and temporal variation in migration intensity. The highest intensity of migration was seen in central France. The overall migration directions showed strong southwest components. Migration dynamics were strongly related to synoptic wind conditions. A wind-related mass migration event occurred immediately after a change in wind conditions, but quickly diminished even when supporting winds continued to prevail. This first continental-scale study using the European network of weather radars demonstrates the wealth of information available and its potential for investigating large-scale bird movements, with consequences for ecosystem function, nutrient transfer, human and livestock health, and civil and military aviation.
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format Journal Article
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:52:24Z
publishDate 2018
publisher Blackwell Publishing
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spelling curtin-20.500.11937-724092018-12-13T09:32:29Z Revealing patterns of nocturnal migration using the European weather radar network Nilsson, C. Dokter, A. Verlinden, L. Shamoun-Baranes, J. Schmid, B. Desmet, P. Bauer, S. Chapman, J. Alves, J. Stepanian, P. Sapir, N. Wainwright, C. Boos, M. Górska, A. Menz, Myles Rodrigues, P. Leijnse, H. Zehtindjiev, P. Brabant, R. Haase, G. Weisshaupt, N. Ciach, M. Liechti, F. © 2018 The Authors Nocturnal avian migration flyways remain an elusive concept, as we have largely lacked methods to map their full extent. We used the network of European weather radars to investigate nocturnal bird movements at the scale of the European flyway. We mapped the main migration directions and showed the intensity of movement across part of Europe by extracting biological information from 70 weather radar stations from northern Scandinavia to Portugal, during the autumn migration season of 2016. On average, over the 20 nights and all sites, 389 birds passed per 1 km transect per hour. The night with highest migration intensity showed an average of 1621 birds km–1 h–1 passing the radar stations, but there was considerable geographical and temporal variation in migration intensity. The highest intensity of migration was seen in central France. The overall migration directions showed strong southwest components. Migration dynamics were strongly related to synoptic wind conditions. A wind-related mass migration event occurred immediately after a change in wind conditions, but quickly diminished even when supporting winds continued to prevail. This first continental-scale study using the European network of weather radars demonstrates the wealth of information available and its potential for investigating large-scale bird movements, with consequences for ecosystem function, nutrient transfer, human and livestock health, and civil and military aviation. 2018 Journal Article http://hdl.handle.net/20.500.11937/72409 10.1111/ecog.04003 Blackwell Publishing restricted
spellingShingle Nilsson, C.
Dokter, A.
Verlinden, L.
Shamoun-Baranes, J.
Schmid, B.
Desmet, P.
Bauer, S.
Chapman, J.
Alves, J.
Stepanian, P.
Sapir, N.
Wainwright, C.
Boos, M.
Górska, A.
Menz, Myles
Rodrigues, P.
Leijnse, H.
Zehtindjiev, P.
Brabant, R.
Haase, G.
Weisshaupt, N.
Ciach, M.
Liechti, F.
Revealing patterns of nocturnal migration using the European weather radar network
title Revealing patterns of nocturnal migration using the European weather radar network
title_full Revealing patterns of nocturnal migration using the European weather radar network
title_fullStr Revealing patterns of nocturnal migration using the European weather radar network
title_full_unstemmed Revealing patterns of nocturnal migration using the European weather radar network
title_short Revealing patterns of nocturnal migration using the European weather radar network
title_sort revealing patterns of nocturnal migration using the european weather radar network
url http://hdl.handle.net/20.500.11937/72409