The Universal Aspect Ratio of Vortices in Rotating Stratifi?ed Flows: Experiments and Observations
arXiv:1203.1562 · doi:10.1017/jfm.2012.176
Abstract
We validate a new law for the aspect ratio of vortices in a rotating, stratified flow, where and are the vertical half-height and horizontal length scale of the vortices. The aspect ratio depends not only on the Coriolis parameter f and buoyancy (or Brunt-Vaisala) frequency of the background flow, but also on the buoyancy frequency within the vortex and on the Rossby number of the vortex such that . This law for is obeyed precisely by the exact equilibrium solution of the inviscid Boussinesq equations that we show to be a useful model of our laboratory vortices. The law is valid for both cyclones and anticyclones. Our anticyclones are generated by injecting fluid into a rotating tank filled with linearly-stratified salt water. The vortices are far from the top and bottom boundaries of the tank, so there is no Ekman circulation. In one set of experiments, the vortices viscously decay, but as they do, they continue to obey our law for , which decreases over time. In a second set of experiments, the vortices are sustained by a slow continuous injection after they form, so they evolve more slowly and have larger |Ro|, but they also obey our law for . The law for is not only validated by our experiments, but is also shown to be consistent with observations of the aspect ratios of Atlantic meddies and Jupiter's Great Red Spot and Oval BA. The relationship for is derived and examined numerically in a companion paper by Hassanzadeh et al. (2012).
Submitted to the Journal of Fluid Mechanics. Also see the companion paper by Hassanzadeh et al. "The Universal Aspect Ratio of Vortices in Rotating Stratifi?ed Flows: Theory and Simulation" 2012
References in corpus (1)
Cited by in corpus (8)
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- Stability of 3D Gaussian vortices in an unbounded, rotating, vertically-stratified, Boussinesq flow: Linear analysis
- Remote determination of the shape of Jupiter's vortices from laboratory experiments
- Numerical study of the McIntyre instability around Gaussian floating vortices in thermal wind balance
- Geophysical flows over topography, a playground for laboratory experiments
- Dynamical constraints on the vertical structure of Jupiter's polar cyclones