Search NASA⌕ Search

NASA NTRS · 20205008664

Physical Oceanography in the Solar System and Beyond

Abstract

A key controller of a planet’s rotational evolution, and hence habitability, is tidal dissipation, which on Earth occurs primarily in the oceans. As the discovery of habitable exoplanets is a primary objective of exoplanet research, it is imperative that we understand how “exo-oceans” behave. Despite this importance, little research has investigated the physical oceanography of worlds other than Earth. This oversight has occurred even though the Earth science community has studied tidal flows in Earth’s oceans for over a century and developed sophisticated models that exquisitely match satellite altimetry data, e.g. Here, we present a) models of tidal effects on exoplanets to motivate the problem, b) the application of a physical oceanography model to a putative ancient Venus ocean, and c) the application of that model to an ensemble of “alternative Earths” with a range of continental configurations and seafloor properties. We find that oceanic tidal dissipation can span 5 orders of magnitude, revealing that simulating exo-oceans with Earth science tools will provide fundamental insight into exoplanet evolution and habitability

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

K. R. Barnes, J. A. M. Green, Michael Joseph Way, B. W. Blackledge, M. J. Way, G. D. Egbert, J. Sharples. Physical Oceanography in the Solar System and Beyond. https://ntrs.nasa.gov/citations/20205008664

Cite the original work for its findings. Save a collection to share your selection of sources.