15 citations · 29 across the 3 of their papers we have counts for
3 papers
astro-ph.EP2023★ 4 cited
Lorenz Energy Cycle: Another Way to Understand the Atmospheric Circulation on Tidally Locked Terrestrial Planets
Shuang Wang, Jun Yang
In this study, we employ and modify the Lorenz energy cycle (LEC) framework as another way to understand the atmospheric circulation on tidally locked terrestrial planets. It well…
astro-ph.EP2022★ 10 cited
Atmospheric Overturning Circulation on Dry, Tidally-locked Rocky Planets is Mainly Driven by Radiative Cooling
Shuang Wang, Jun Yang
In this study, we examine the driving mechanism for the atmospheric overturning circulation on dry, tidally-locked rocky planets without the condensation of water vapor or other sp…
physics.ao-ph2020★ 15 cited
Phase Shift of Planetary Waves and Wave--Jet Resonance on Tidally Locked Planets
Shuang Wang, Jun Yang
Recent studies found that atmospheric superrotation (i.e., west-to-east winds over the equator) on tidally locked planets can modify the phase of planetary waves. But, a clear rela…