Jovian Vortex Hunter: a citizen science project to study Jupiter's vortices
arXiv:2408.04772 · doi:10.3847/PSJ/ad6e75
Abstract
The Jovian atmosphere contains a wide diversity of vortices, which have a large range of sizes, colors and forms in different dynamical regimes. The formation processes for these vortices is poorly understood, and aside from a few known, long-lived ovals, such as the Great Red Spot, and Oval BA, vortex stability and their temporal evolution are currently largely unknown. In this study, we use JunoCam data and a citizen-science project on Zooniverse to derive a catalog of vortices, some with repeated observations, through May 2018 to Sep 2021, and analyze their associated properties, such as size, location and color. We find that different colored vortices (binned as white, red, brown and dark), follow vastly different distributions in terms of their sizes and where they are found on the planet. We employ a simplified stability criterion using these vortices as a proxy, to derive a minimum Rossby deformation length for the planet of km. We find that this value of is largely constant throughout the atmosphere, and does not have an appreciable meridional gradient.
21 pages, 30 figures, in press at Planetary Science Journal
References in corpus (7)
- Moist Convection and the 2010-2011 Revival of Jupiter's South Equatorial Belt
- First Earth-based Detection of a Superbolide on Jupiter
- Jupiter's Equatorial Plumes and Hot Spots: Spectral Mapping from Gemini/TEXES and Juno/MWR
- Observations and numerical modelling of a convective disturbance in a large-scale cyclone in Jupiter's South Temperate Belt
- A new convective parameterization applied to Jupiter: implications for water abundance near the N region
- Fragmentation modelling of the August 2019 impact on Jupiter
- The aftermath of convective events near Jupiter's fastest prograde jet: implications for clouds, dynamics and vertical wind shear