Calculated by the lab
- Solar declination from orbit and tilt
- Illuminated hemisphere geometry
Set Earth's axial tilt to 90 degrees and watch the illumination geometry change.
The seasonal lighting is visible; seasonal climate is not computed.
Uranus rotates with an axial tilt near 98 degrees, perhaps after a giant collision early in its history. A highly tilted planet presents its poles toward its star at different parts of the orbit and can experience extreme seasonal illumination.
This scenario sets the simulated Earth's tilt to 90 degrees. The axis, solar declination, terminator, and orbit lighting respond to that geometry as simulated time advances.
The climate solver still computes a global average and does not use tilt to calculate regional or annual temperatures. The familiar latitude temperature pattern is not replaced by a seasonal climate model.
Each step is labeled so you can tell a calculated result from an explanatory visual or wider scientific context.
The rotation axis is placed in the orbital plane instead of near upright.
Orbital position and axial tilt determine the direction of incoming light and the terminator.
Orbit and planet views show the changing axis and illuminated hemisphere.
Real high-obliquity seasons depend on heat storage and transport that this global model does not include.
Model scope: Tilt affects the lighting geometry, not the simulator's regional temperature field or annual climate.