https://doi.org/10.25678/0007PR

Data for: Penetrative Convection Modifies the Dynamics of Downslope Gravity Currents

Gravity currents contribute to the transport of heat and mass in atmospheric and aquatic environments. In aquatic systems subject to daily surface cooling, gravity currents propagate through turbulent convective surroundings. Yet, the effects of thermal convection on aquatic gravity currents remain to be quantified. This paper demonstrates how the interaction between penetrative convection and downslope gravity currents impacts the fluid dynamics and transport across littoral aquatic systems. We performed field experiments in a wind-sheltered lake experiencing differential cooling to resolve the dynamics of thermally driven gravity currents in convective environments. Our in situ observations reveal that convective plumes penetrate gravity currents, generating large vertical fluctuations that foster the erosion of the stratified layer. This enhanced vertical mixing destroys the stratified downslope flow and limits the basin-scale transport. Our results demonstrate that the interaction between penetrative convection and downslope gravity currents controls the littoral-pelagic connectivity in aquatic ecosystems.

Dataset extent

Data and Resources

Citation

This Data Package

Doda, T., Ulloa, H. N., Ramón, C. L., Wüest, A., & Bouffard, D. (2022). Data for: Penetrative Convection Modifies the Dynamics of Downslope Gravity Currents (Version 1.0). Eawag: Swiss Federal Institute of Aquatic Science and Technology. https://doi.org/10.25678/0007PR

The associated article

Doda, T., Ulloa, H. N., Ramón, C. L., Wüest, A., & Bouffard, D. (2023). Penetrative Convection Modifies the Dynamics of Downslope Gravity Currents. Geophysical Research Letters, 50(2). https://doi.org/10.1029/2022gl100633

Metadata

Open Data Open Data
Author
  • Doda, Tomy
  • Ulloa, Hugo. N.
  • Ramón, Cintia L.
  • Wüest, Alfred
  • Bouffard, Damien
Keywords convective plumes,density current,differential cooling,interface fluctuations,lateral transport
Variables
  • temperature
  • velocity
Systems
  • lake
Timerange
  • 2019-10-10 TO 2019-11-12
Geographic Name(s)
  • Rotsee
Review Level none
Curator Doda, Tomy
Contact Bouffard, Damien <Damien.Bouffard@eawag.ch>
DOI 10.25678/0007PR