The bands of Jupiter represent a global system of powerful winds. Broad eastward equatorial jets are flanked by smaller-scale, higher-latitude jets flowing in alternating directions. Jupiter's large thermal emission suggests that the winds are powered from within, but the zonal flow depth is limited by increasing density and electrical conductivity in the molecular hydrogen-helium atmosphere towards the centre of the planet. Two types of planetary flow models have been explored: shallow-layer models reproduce multiple high-latitude jets, but not the equatorial flow system, and deep convection models only reproduce an eastward equatorial jet with two flanking neighbours. Here we present a numerical model of three-dimensional rotating convect...
We present highlights from a large set of simulations of a hot Jupiter atmosphere, nominally based o...
Large-scale zonal flows, as observed on the giant planets, can be driven by thermal convection in a ...
Large-scale zonal flows, as observed on the giant planets, can be driven by thermal convection in a ...
The bands of Jupiter represent a global system of powerful winds. Broad eastward equatorial jets are...
The bands of Jupiter represent a global system of powerful winds. Broad eastward equatorial jets are...
The origin of zonal jets on the jovian planets has long been a topic of scientific debate. In this p...
The origin of zonal jets on the jovian planets has long been a topic of scientific debate. In this p...
Studies of the dynamical response of thin atmospheric layers overlying thick envelopes are extended ...
The surface winds of Jupiter and Saturn are primarily zonal. Each planet exhibits strong prograde eq...
Jupiter and Saturn emit nearly twice the thermal energy they receive from the Sun. Although insolati...
Jupiter and Saturn emit nearly twice the thermal energy they receive from the Sun. Although insolati...
The giant planets exhibit banded zonal jet streams that have maintained theirstructures over decades...
We investigate the dynamics of Jupiter's upper troposphere and lower stratosphere using a General Ci...
We present results of a numerical model for studying the dynamics of Jupiter's equatorial jet. The c...
We present highlights from a large set of simulations of a hot Jupiter atmosphere, nominally based o...
We present highlights from a large set of simulations of a hot Jupiter atmosphere, nominally based o...
Large-scale zonal flows, as observed on the giant planets, can be driven by thermal convection in a ...
Large-scale zonal flows, as observed on the giant planets, can be driven by thermal convection in a ...
The bands of Jupiter represent a global system of powerful winds. Broad eastward equatorial jets are...
The bands of Jupiter represent a global system of powerful winds. Broad eastward equatorial jets are...
The origin of zonal jets on the jovian planets has long been a topic of scientific debate. In this p...
The origin of zonal jets on the jovian planets has long been a topic of scientific debate. In this p...
Studies of the dynamical response of thin atmospheric layers overlying thick envelopes are extended ...
The surface winds of Jupiter and Saturn are primarily zonal. Each planet exhibits strong prograde eq...
Jupiter and Saturn emit nearly twice the thermal energy they receive from the Sun. Although insolati...
Jupiter and Saturn emit nearly twice the thermal energy they receive from the Sun. Although insolati...
The giant planets exhibit banded zonal jet streams that have maintained theirstructures over decades...
We investigate the dynamics of Jupiter's upper troposphere and lower stratosphere using a General Ci...
We present results of a numerical model for studying the dynamics of Jupiter's equatorial jet. The c...
We present highlights from a large set of simulations of a hot Jupiter atmosphere, nominally based o...
We present highlights from a large set of simulations of a hot Jupiter atmosphere, nominally based o...
Large-scale zonal flows, as observed on the giant planets, can be driven by thermal convection in a ...
Large-scale zonal flows, as observed on the giant planets, can be driven by thermal convection in a ...