Profound daily vertical stratification and mixing in a small, shallow, wind-exposed lake with submerged macrophytes

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

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Profound daily vertical stratification and mixing in a small, shallow, wind-exposed lake with submerged macrophytes. / Andersen, Mikkel Ren; Sand-Jensen, Kaj; Woolway, R. Iestyn et al.
Yn: Aquatic Sciences, Cyfrol 79, Rhif 2, 04.2017, t. 395-406.

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

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Andersen MR, Sand-Jensen K, Woolway RI, Jones ID. Profound daily vertical stratification and mixing in a small, shallow, wind-exposed lake with submerged macrophytes. Aquatic Sciences. 2017 Ebr;79(2):395-406. Epub 2016 Medi 8. doi: 10.1007/s00027-016-0505-0

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Andersen, Mikkel Ren ; Sand-Jensen, Kaj ; Woolway, R. Iestyn et al. / Profound daily vertical stratification and mixing in a small, shallow, wind-exposed lake with submerged macrophytes. Yn: Aquatic Sciences. 2017 ; Cyfrol 79, Rhif 2. tt. 395-406.

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TY - JOUR

T1 - Profound daily vertical stratification and mixing in a small, shallow, wind-exposed lake with submerged macrophytes

AU - Andersen, Mikkel Ren

AU - Sand-Jensen, Kaj

AU - Woolway, R. Iestyn

AU - Jones, Ian D.

PY - 2017/4

Y1 - 2017/4

N2 - Mixing and stratification patterns in lakes are critical attributes because they are important regulators of distribution of gases, solutes and organisms. While numerous studies have focused on mixing and stratification in large lakes, the ecology and hydrodynamics of small lakes remain grossly understudied. This is critical because small lakes are far more abundant than large lakes globally. We studied a small (<1000 m2) and shallow (<0.6 m) lake with clear water and dense submerged charophyte stands located on Öland, SE Sweden, between March 25th and May 29th to investigate the thermal regimes, surface heat fluxes and stratification and mixing processes. Daytime vertical temperature differences developed in the water column ranging from 3 °C in March to 15 °C in May. Cooling of surface waters led to full convective mixing of the water column each night. The lake shallowed from March to May. The largest temperature differences were recorded in the early afternoon although wind speeds were highest at this time. The dense charophyte cover rapidly attenuated depth penetration of wind-induced mixing and radiative fluxes. Dense macrophyte stands can engineer their own environment by facilitating build-up of steep temperature and chemical gradients. This interaction should have implications for small lakes worldwide.

AB - Mixing and stratification patterns in lakes are critical attributes because they are important regulators of distribution of gases, solutes and organisms. While numerous studies have focused on mixing and stratification in large lakes, the ecology and hydrodynamics of small lakes remain grossly understudied. This is critical because small lakes are far more abundant than large lakes globally. We studied a small (<1000 m2) and shallow (<0.6 m) lake with clear water and dense submerged charophyte stands located on Öland, SE Sweden, between March 25th and May 29th to investigate the thermal regimes, surface heat fluxes and stratification and mixing processes. Daytime vertical temperature differences developed in the water column ranging from 3 °C in March to 15 °C in May. Cooling of surface waters led to full convective mixing of the water column each night. The lake shallowed from March to May. The largest temperature differences were recorded in the early afternoon although wind speeds were highest at this time. The dense charophyte cover rapidly attenuated depth penetration of wind-induced mixing and radiative fluxes. Dense macrophyte stands can engineer their own environment by facilitating build-up of steep temperature and chemical gradients. This interaction should have implications for small lakes worldwide.

KW - Temperature stratification

KW - Vertical mixing

KW - Small lake

KW - Macrophytes

KW - Charophytes

U2 - 10.1007/s00027-016-0505-0

DO - 10.1007/s00027-016-0505-0

M3 - Article

VL - 79

SP - 395

EP - 406

JO - Aquatic Sciences

JF - Aquatic Sciences

SN - 1015-1621

IS - 2

ER -