Laboratory exploration of heat transfer regimes in rapidly rotating turbulent convection

JS Cheng, M Madonia, AJ Aguirre Guzmán… - Physical Review …, 2020 - APS
We report heat transfer and temperature profile measurements in laboratory experiments of
rapidly rotating convection in water under intense thermal forcing (Rayleigh number Ra as …

Laboratory Exploration of Heat Transfer Regimes in Rapidly Rotating Turbulent Convection

JS Cheng, M Madonia, AJA Guzmán… - arXiv preprint arXiv …, 2019 - arxiv.org
We report heat transfer and temperature profile measurements in laboratory experiments of
rapidly rotating convection in water under intense thermal forcing (Rayleigh number $ Ra …

Laboratory exploration of heat transfer regimes in rapidly rotating turbulent convection

JS Cheng, M Madonia, AJA Guzman… - Physical Review …, 2020 - research.tue.nl
We report heat transfer and temperature profile measurements in laboratory experiments of
rapidly rotating convection in water under intense thermal forcing (Rayleigh number Ra as …

[PDF][PDF] Laboratory exploration of heat transfer regimes in rapidly rotating turbulent convection

JS Cheng, M Madonia, AJ Aguirre Guzman… - … REVIEW FLUIDS Phys …, 2020 - pure.tue.nl
Convectively driven, rotationally constrained flows are the foundation of many geophysical
and astrophysical processes, from dynamo action in Earth's molten iron core [1] to …

Laboratory exploration of heat transfer regimes in rapidly rotating turbulent convection

JS Cheng, M Madonia… - Physical Review …, 2020 - ui.adsabs.harvard.edu
We report heat transfer and temperature profile measurements in laboratory experiments of
rapidly rotating convection in water under intense thermal forcing (Rayleigh number Ra as …

[PDF][PDF] Laboratory exploration of heat transfer regimes in rapidly rotating turbulent convection

JS Cheng, M Madonia, AJ Aguirre Guzman… - … REVIEW FLUIDS Phys …, 2020 - pure.tue.nl
Convectively driven, rotationally constrained flows are the foundation of many geophysical
and astrophysical processes, from dynamo action in Earth's molten iron core [1] to …