🧠Zerith – Global Energy Project
🧬 Technical Documentation
→ General Concept
Zerith proposes a regenerative energy system leveraging atmospheric differential forces and sequential internal transfer mechanisms. The goal is to harvest, redirect, and reintroduce energy across modular stages in a self-coordinated loop.
→ Key Scientific Principles
- Controlled displacement using pressure delta across stacked chambers
- Phase-based work extraction during elevation and descent
- Entrainment-induced airflow enhancement for secondary stage recovery
- Reuse of waste heat via low boiling working mediums
→ Implementation Hints
- System composed of fluidic, kinetic, and thermal modules
- No reliance on combustion or external heat sources
- Work extracted through differential physics, redirection, and timing logic
→ Risks & Challenges
- Cycle disruption during phase transitions
- Efficiency loss due to premature equalization or leakage
- Synchronization issues under dynamic flows
- Material fatigue under vacuum and thermal cycling
→ Structural Models & Logic Flow