English

Internal Heat and Energy Imbalance of Uranus

Earth and Planetary Astrophysics 2025-03-03 v1

Abstract

With its extreme axial tilt, radiant energy budget and internal heat of Uranus remain among the most intriguing mysteries of our Solar System. Here, we present the global radiant energy budget spanning a complete orbital period, revealing significant seasonal variations driven primarily by the highly variable solar flux. Despite these fluctuations, emitted thermal power consistently exceeds absorbed solar power, indicating a net energy loss and ongoing global cooling. Based on the seasonal variations of radiant energy budget, we determine a statistically significant internal heat flux. This finding resolves a long-standing debate over whether Uranus possesses internal heat. We also examine the energy budget of the weather layer by combining the internal heat with the radiant energies, revealing significant energy imbalances at both global and hemispheric scales. These global and hemispheric imbalances should be considered in theoretical and numerical models. The Uranus flagship mission, as recommended by the recent survey, will provide crucial observations to address more unresolved questions and advance our understanding of this enigmatic ice giant.

Keywords

Cite

@article{arxiv.2502.20722,
  title  = {Internal Heat and Energy Imbalance of Uranus},
  author = {Xinyue Wang and Liming Li and Michael Roman and Xi Zhang and Xun Jiang and Patrick M. Fry and Cheng Li and Gwenael Milcareck and Agustin Sanchez-Lavega and Santiago Perez-Hoyos and Ricardo Hueso and Tristan Guillot and Conor A. Nixon and Ulyana A. Dyudina and Robert A. West and Matthew E. Kenyon},
  journal= {arXiv preprint arXiv:2502.20722},
  year   = {2025}
}