Scale-by-scale kinetic energy flux calculations in simulations of rotating convection
arXiv:2505.15463 · doi:10.1017/jfm.2025.10907
Abstract
Turbulence is an out-of-equilibrium flow state that is characterised by nonzero net fluxes of kinetic energy between different scales of the flow. These fluxes play a crucial role in the formation of characteristic flow structures in many turbulent flows encountered in nature. However, measuring these energy fluxes in practical settings can be challenging as soon as one moves away from unrestricted turbulence in an idealised periodic box. Here, we focus on rotating Rayleigh-Bénard convection, being the canonical model system to study geophysical and astrophysical flows. Owing to the effect of rotation, this flow can yield a split cascade, where part of the energy is transported to smaller scales (direct cascade), while another fraction is transported to larger scales (inverse cascade). We compare two different techniques for measuring these energy fluxes throughout the domain: one based on a spatial filtering approach and an adapted Fourier-based method. We show how one can use these methods to measure the energy flux adequately in the anisotropic, aperiodic domains encountered in rotating convection, even in domains with spatial confinement. Our measurements reveal that in the studied regime, the bulk flow is dominated by the direct cascade, while significant inverse cascading action is observed most strongly near the top and bottom plates, due to the vortex merging of Ekman plumes into larger flow structures.
22 pages
References in corpus (12)
- Inverse cascade and symmetry breaking in rapidly-rotating Boussinesq convection
- Large-scale vortices in rapidly rotating Rayleigh-Bénard convection
- The effects of Ekman pumping on quasi-geostrophic Rayleigh-Benard convection
- Boundary Zonal Flow in Rotating Turbulent Rayleigh-Bénard Convection
- Turbulent rotating convection confined in a slender cylinder: the sidewall circulation
- Boundary zonal flows in rapidly rotating turbulent thermal convection
- Frictional boundary layer effect on vortex condensation in rotating turbulent convection
- Comparing local energy cascade rates in isotropic turbulence using structure function and filtering formulations
- Discontinuous Transitions Towards Vortex Condensates in Buoyancy-Driven Rotating Turbulence
- Energy cascades in rapidly rotating and stratified turbulence within elongated domains
- Robust wall modes and their interplay with bulk turbulence in confined rotating Rayleigh-Bénard convection
- Bridging the Rossby number gap in rapidly rotating thermal convection