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Escapement, route choice, barrier passage and entrainment of seaward migrating European eel, Anguilla anguilla, within a highly regulated lowland river

Escapement, route choice, barrier passage and entrainment of seaward migrating European eel, Anguilla anguilla, within a highly regulated lowland river
Escapement, route choice, barrier passage and entrainment of seaward migrating European eel, Anguilla anguilla, within a highly regulated lowland river
Fluvial disconnectivity can have important impacts on fish populations, including hindering movement between habitats required for different ontogenic stages. Recruitment of the European eel (Anguilla anguilla) has reduced by over 90% since the early 1980's, in part due to the effect of riverine barriers on its catadromous migration. There is a legislative requirement to restore free passage, increase habitat availability, and limit anthropogenic losses at intakes to aid eel recovery and good ecological status; necessitating an improved understanding of underlying processes. Escapement, route choice, delay at structures, and entrainment at water abstraction points of downstream migrating silver eels were examined using acoustic and Passive Integrated Transponder (PIT) telemetry in the heavily regulated lower river Stour, UK. Downstream migrating adult eel (n = 69) were trapped approximately 10 km upstream of the tidal limit, surgically implanted with an acoustic transducer and PIT transponder, and released between October and December in 2009 and 2010. Movements of tagged individuals were monitored by a linear array of 19 fixed acoustic receivers extending from the release site, through the last 9.2 km of the freshwater catchment. Three groups of water control structures, two water abstraction intakes and several possible routes of migration are present in the reach. Seventy six and 65% of tagged eels escaped from the study reach in 2009 and 2010, respectively. Entrainment at a single intake was the principal cause of loss and positively related to rapid increases in abstraction whilst eels were in the vicinity of the intake. Route choice into the estuary was dependent on discharge over a large intertidal weir; opening regimes of a tidal gate at the termination of the alternative channel; and abstraction rate at a nearby water intake. Long delays (up to 68.5 days) and recurrent behaviour were associated with several structures in the study reach; high variability between individuals reflected the management of spill at weirs. Potential scenarios for minimising entrainment and delay through integrated management of water level control structures and abstraction rates are discussed.
fish migration, barrier, fish passage, telemetry, habitat fragmentation
0925-8574
88-96
Piper, Adam T.
03898caa-b880-4200-9406-a521a74dc6f7
Wright, Ros
45ce8590-d8e3-4edb-83d8-bc39d16b5861
Walker, Alan
f569ee63-ac52-48a7-872c-57534fff9f3b
Kemp, P.S.
9e33fba6-cccf-4eb5-965b-b70e72b11cd7
Piper, Adam T.
03898caa-b880-4200-9406-a521a74dc6f7
Wright, Ros
45ce8590-d8e3-4edb-83d8-bc39d16b5861
Walker, Alan
f569ee63-ac52-48a7-872c-57534fff9f3b
Kemp, P.S.
9e33fba6-cccf-4eb5-965b-b70e72b11cd7

Piper, Adam T., Wright, Ros, Walker, Alan and Kemp, P.S. (2013) Escapement, route choice, barrier passage and entrainment of seaward migrating European eel, Anguilla anguilla, within a highly regulated lowland river. Ecological Engineering, 57, 88-96. (doi:10.1016/j.ecoleng.2013.04.030).

Record type: Article

Abstract

Fluvial disconnectivity can have important impacts on fish populations, including hindering movement between habitats required for different ontogenic stages. Recruitment of the European eel (Anguilla anguilla) has reduced by over 90% since the early 1980's, in part due to the effect of riverine barriers on its catadromous migration. There is a legislative requirement to restore free passage, increase habitat availability, and limit anthropogenic losses at intakes to aid eel recovery and good ecological status; necessitating an improved understanding of underlying processes. Escapement, route choice, delay at structures, and entrainment at water abstraction points of downstream migrating silver eels were examined using acoustic and Passive Integrated Transponder (PIT) telemetry in the heavily regulated lower river Stour, UK. Downstream migrating adult eel (n = 69) were trapped approximately 10 km upstream of the tidal limit, surgically implanted with an acoustic transducer and PIT transponder, and released between October and December in 2009 and 2010. Movements of tagged individuals were monitored by a linear array of 19 fixed acoustic receivers extending from the release site, through the last 9.2 km of the freshwater catchment. Three groups of water control structures, two water abstraction intakes and several possible routes of migration are present in the reach. Seventy six and 65% of tagged eels escaped from the study reach in 2009 and 2010, respectively. Entrainment at a single intake was the principal cause of loss and positively related to rapid increases in abstraction whilst eels were in the vicinity of the intake. Route choice into the estuary was dependent on discharge over a large intertidal weir; opening regimes of a tidal gate at the termination of the alternative channel; and abstraction rate at a nearby water intake. Long delays (up to 68.5 days) and recurrent behaviour were associated with several structures in the study reach; high variability between individuals reflected the management of spill at weirs. Potential scenarios for minimising entrainment and delay through integrated management of water level control structures and abstraction rates are discussed.

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More information

e-pub ahead of print date: 13 May 2013
Published date: August 2013
Keywords: fish migration, barrier, fish passage, telemetry, habitat fragmentation
Organisations: Water & Environmental Engineering Group

Identifiers

Local EPrints ID: 353278
URI: http://eprints.soton.ac.uk/id/eprint/353278
ISSN: 0925-8574
PURE UUID: 6ee58716-d7fe-4074-a41c-7e047e726b0f
ORCID for P.S. Kemp: ORCID iD orcid.org/0000-0003-4470-0589

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Date deposited: 04 Jun 2013 10:37
Last modified: 15 Mar 2024 03:21

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Contributors

Author: Adam T. Piper
Author: Ros Wright
Author: Alan Walker
Author: P.S. Kemp ORCID iD

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