Rapidly expanding lake heatwaves under climate change

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Rapidly expanding lake heatwaves under climate change. / Woolway, R. Iestyn; Anderson, Eric J.; Albergel, Clement.
In: Environmental Research Letters, Vol. 16, No. 9, 18.08.2021.

Research output: Contribution to journalArticlepeer-review

HarvardHarvard

Woolway, RI, Anderson, EJ & Albergel, C 2021, 'Rapidly expanding lake heatwaves under climate change', Environmental Research Letters, vol. 16, no. 9. https://doi.org/10.1088/1748-9326/ac1a3a

APA

Woolway, R. I., Anderson, E. J., & Albergel, C. (2021). Rapidly expanding lake heatwaves under climate change. Environmental Research Letters, 16(9). https://doi.org/10.1088/1748-9326/ac1a3a

CBE

Woolway RI, Anderson EJ, Albergel C. 2021. Rapidly expanding lake heatwaves under climate change. Environmental Research Letters. 16(9). https://doi.org/10.1088/1748-9326/ac1a3a

MLA

Woolway, R. Iestyn, Eric J. Anderson and Clement Albergel. "Rapidly expanding lake heatwaves under climate change". Environmental Research Letters. 2021. 16(9). https://doi.org/10.1088/1748-9326/ac1a3a

VancouverVancouver

Woolway RI, Anderson EJ, Albergel C. Rapidly expanding lake heatwaves under climate change. Environmental Research Letters. 2021 Aug 18;16(9). doi: 10.1088/1748-9326/ac1a3a

Author

Woolway, R. Iestyn ; Anderson, Eric J. ; Albergel, Clement. / Rapidly expanding lake heatwaves under climate change. In: Environmental Research Letters. 2021 ; Vol. 16, No. 9.

RIS

TY - JOUR

T1 - Rapidly expanding lake heatwaves under climate change

AU - Woolway, R. Iestyn

AU - Anderson, Eric J.

AU - Albergel, Clement

PY - 2021/8/18

Y1 - 2021/8/18

N2 - Lake heatwaves—prolonged periods of hot surface water temperature in lakes—have recently been shown to increase in intensity and duration, with numerous potential implications for aquatic ecosystems. However, an important physical attribute of lake heatwaves that has not yet been investigated is their spatial extent, and how it varies within a warming world. Here, we show that the spatial extent of lake heatwaves, defined as contiguous regions within a lake that simultaneously experience extreme warm conditions, is increasing in the largest group of freshwater lakes on Earth, The Laurentian Great Lakes. We show that the maximum spatial extent of lake heatwaves is sensitive to inter-annual variations in winter ice cover and the timing of stratification onset in spring. Notably, we find that a lengthening of the warm summer season and, in turn, an overall increase in surface water temperature, stimulates the development of larger lake heatwaves. On average, our results suggest that the mean spatial extent of lake heatwaves has increased two-fold since 1995. We anticipate this rapid expansion of lake heatwaves to have widespread implications for heat-related impacts on aquatic species

AB - Lake heatwaves—prolonged periods of hot surface water temperature in lakes—have recently been shown to increase in intensity and duration, with numerous potential implications for aquatic ecosystems. However, an important physical attribute of lake heatwaves that has not yet been investigated is their spatial extent, and how it varies within a warming world. Here, we show that the spatial extent of lake heatwaves, defined as contiguous regions within a lake that simultaneously experience extreme warm conditions, is increasing in the largest group of freshwater lakes on Earth, The Laurentian Great Lakes. We show that the maximum spatial extent of lake heatwaves is sensitive to inter-annual variations in winter ice cover and the timing of stratification onset in spring. Notably, we find that a lengthening of the warm summer season and, in turn, an overall increase in surface water temperature, stimulates the development of larger lake heatwaves. On average, our results suggest that the mean spatial extent of lake heatwaves has increased two-fold since 1995. We anticipate this rapid expansion of lake heatwaves to have widespread implications for heat-related impacts on aquatic species

KW - limnology

KW - global warming

KW - climate variability

KW - extremes

U2 - 10.1088/1748-9326/ac1a3a

DO - 10.1088/1748-9326/ac1a3a

M3 - Article

VL - 16

JO - Environmental Research Letters

JF - Environmental Research Letters

SN - 1748-9326

IS - 9

ER -