Oxycline oscillations induced by internal waves in deep Lake Iseo

<p>Lake Iseo is undergoing a dramatic deoxygenation of the hypolimnion, representing an emblematic example among the deep lakes of the pre-alpine area that are, to a different extent, undergoing reduced deep-water mixing. In the anoxic deep waters, the release and accumulation of reduced subst...

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Main Authors: G. Valerio, M. Pilotti, M. P. Lau, M. Hupfer
Format: Article
Language:English
Published: Copernicus Publications 2019-04-01
Series:Hydrology and Earth System Sciences
Online Access:https://www.hydrol-earth-syst-sci.net/23/1763/2019/hess-23-1763-2019.pdf
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spelling doaj-e4f667720f8e4c58a9d46c0e25fdc94e2020-11-25T02:15:40ZengCopernicus PublicationsHydrology and Earth System Sciences1027-56061607-79382019-04-01231763177710.5194/hess-23-1763-2019Oxycline oscillations induced by internal waves in deep Lake IseoG. Valerio0M. Pilotti1M. Pilotti2M. P. Lau3M. P. Lau4M. Hupfer5DICATAM, Università degli Studi di Brescia, via Branze 43, 25123 Brescia, ItalyDICATAM, Università degli Studi di Brescia, via Branze 43, 25123 Brescia, ItalyCivil & Environmental Engineering Department, Tufts University, Medford, MA 02155, USALeibniz-Institute of Freshwater Ecology and Inland Fisheries, Müggelseedamm 310, 12587 Berlin, GermanyUniversité du Quebec à Montréal (UQAM), Department of Biological Sciences, Montréal, QC H2X 3Y7, CanadaLeibniz-Institute of Freshwater Ecology and Inland Fisheries, Müggelseedamm 310, 12587 Berlin, Germany<p>Lake Iseo is undergoing a dramatic deoxygenation of the hypolimnion, representing an emblematic example among the deep lakes of the pre-alpine area that are, to a different extent, undergoing reduced deep-water mixing. In the anoxic deep waters, the release and accumulation of reduced substances and phosphorus from the sediments are a major concern. Because the hydrodynamics of this lake was shown to be dominated by internal waves, in this study we investigated, for the first time, the role of these oscillatory motions on the vertical fluctuations of the oxycline, currently situated at a depth of approximately 95&thinsp;m, where a permanent chemocline inhibits deep mixing via convection. Temperature and dissolved oxygen data measured at moored stations show large and periodic oscillations of the oxycline, with an amplitude of up to 20&thinsp;m and periods ranging from 1 to 4 days. Deep motions characterized by larger amplitudes at lower frequencies are favored by the excitation of second vertical modes in strongly thermally stratified periods and of first vertical modes in weakly thermally stratified periods, when the deep chemical gradient can support baroclinicity regardless. These basin-scale internal waves cause a fluctuation in the oxygen concentration between 0 and 3&thinsp;mg&thinsp;L<span class="inline-formula"><sup>−1</sup></span> in the water layer between 85 and 105&thinsp;m in depth, changing the redox condition at the sediment surface. This forcing, involving approximately 3&thinsp;% of the lake's sediment area, can have major implications for the biogeochemical processes at the sediment–water interface and for the internal matter cycle.</p>https://www.hydrol-earth-syst-sci.net/23/1763/2019/hess-23-1763-2019.pdf
collection DOAJ
language English
format Article
sources DOAJ
author G. Valerio
M. Pilotti
M. Pilotti
M. P. Lau
M. P. Lau
M. Hupfer
spellingShingle G. Valerio
M. Pilotti
M. Pilotti
M. P. Lau
M. P. Lau
M. Hupfer
Oxycline oscillations induced by internal waves in deep Lake Iseo
Hydrology and Earth System Sciences
author_facet G. Valerio
M. Pilotti
M. Pilotti
M. P. Lau
M. P. Lau
M. Hupfer
author_sort G. Valerio
title Oxycline oscillations induced by internal waves in deep Lake Iseo
title_short Oxycline oscillations induced by internal waves in deep Lake Iseo
title_full Oxycline oscillations induced by internal waves in deep Lake Iseo
title_fullStr Oxycline oscillations induced by internal waves in deep Lake Iseo
title_full_unstemmed Oxycline oscillations induced by internal waves in deep Lake Iseo
title_sort oxycline oscillations induced by internal waves in deep lake iseo
publisher Copernicus Publications
series Hydrology and Earth System Sciences
issn 1027-5606
1607-7938
publishDate 2019-04-01
description <p>Lake Iseo is undergoing a dramatic deoxygenation of the hypolimnion, representing an emblematic example among the deep lakes of the pre-alpine area that are, to a different extent, undergoing reduced deep-water mixing. In the anoxic deep waters, the release and accumulation of reduced substances and phosphorus from the sediments are a major concern. Because the hydrodynamics of this lake was shown to be dominated by internal waves, in this study we investigated, for the first time, the role of these oscillatory motions on the vertical fluctuations of the oxycline, currently situated at a depth of approximately 95&thinsp;m, where a permanent chemocline inhibits deep mixing via convection. Temperature and dissolved oxygen data measured at moored stations show large and periodic oscillations of the oxycline, with an amplitude of up to 20&thinsp;m and periods ranging from 1 to 4 days. Deep motions characterized by larger amplitudes at lower frequencies are favored by the excitation of second vertical modes in strongly thermally stratified periods and of first vertical modes in weakly thermally stratified periods, when the deep chemical gradient can support baroclinicity regardless. These basin-scale internal waves cause a fluctuation in the oxygen concentration between 0 and 3&thinsp;mg&thinsp;L<span class="inline-formula"><sup>−1</sup></span> in the water layer between 85 and 105&thinsp;m in depth, changing the redox condition at the sediment surface. This forcing, involving approximately 3&thinsp;% of the lake's sediment area, can have major implications for the biogeochemical processes at the sediment–water interface and for the internal matter cycle.</p>
url https://www.hydrol-earth-syst-sci.net/23/1763/2019/hess-23-1763-2019.pdf
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