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research article

Moored observations of turbulent mixing events in deep Lake Garda, Italy

van Haren, Hans
•
Piccolroaz, Sebastiano  
•
Amadori, Marina
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January 1, 2021
Journal Of Limnology

Deep water circulation and mixing processes are responsible for the transport of matter, nutrients and pollutants in deep lakes. Nevertheless, detailed continuous observations are rarely available. To overcome some of these deficiencies and with the aim of improving our understanding of deep mixing processes, a dedicated yearlong mooring comprising 100 high-resolution temperature sensors and a single current meter were located in the deeper half of the 344 m deepest point of the subalpine Lake Garda, Italy. The observations show peaks and calms of turbulent exchange, besides ubiquitous internal wave activity. In late winter, northerly winds activate episodic deep convective overturning, the dense water being subsequently advected along the lake-floor. Besides deep convection, such winds also set-up seiches and inertial waves that are associated with about 100 times larger turbulence dissipation rates than that by semidiurnal internal wave breaking observed in summer. In the lower 60 m above the lake-floor, however, the average turbulence dissipation rate is approximately constant in value year-around, being about 10 times larger than open-ocean values, except during deep convection episodes.

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Type
research article
DOI
10.4081/jlimnol.2020.1983
Web of Science ID

WOS:000649429800006

Author(s)
van Haren, Hans
Piccolroaz, Sebastiano  
Amadori, Marina
Toffolon, Marco
Dijkstra, Henk A.
Date Issued

2021-01-01

Published in
Journal Of Limnology
Volume

80

Issue

1

Article Number

1983

Subjects

Limnology

•

Marine & Freshwater Biology

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yearlong high-resolution moored temperature observations

•

deep lake garda

•

internal waves

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turbulent overturning

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convective cooling

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interannual trophic variability

•

frequency internal waves

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stratified lake

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dissipation

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water

•

temperature

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reflection

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overturns

•

boundary

•

geneva

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
APHYS  
Available on Infoscience
June 5, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/178641
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