Stellarator Design Screening
1-Hour Turnaround
Stop waiting weeks for GENE results. Get accurate confinement predictions in 1 hour. Validated r=0.998 correlation with experimental data.
Not 10,000 CPU-hours. Not weeks of waiting.
1 hour turnaround. r=0.998 accuracy.
The Problem
Traditional gyrokinetic codes (GENE, GS2) provide accurate predictions but require:
Testing 1,000 configurations = 2 years + €50 million
You need faster screening.
Our Solution
Our proprietary algorithm delivers:
Test 1,000 configurations = 1 month + €1 million
What You Get
No code. No formulas. Just results.
Input (what you send)
Output (what you receive in 1 hour)
Predicted confinement time τₑ
Energy confinement time estimate
Performance score (0–100)
Normalized against baseline configurations
Ranking vs. baseline
How your design compares to known stellarators
Improvement suggestions
Actionable recommendations for design optimization
Validation
Tested against real experimental data from the world's leading stellarator devices.
W7-X
Max Planck Institute · Greifswald, Germany
Optimized stellarator
HSX
University of Wisconsin · Madison, USA
Quasi-helically symmetric
LHD
NIFS · Toki, Japan
Heliotron
NCSX
PPPL · Princeton, USA
Compact quasi-axisymmetric
FAQ
Common questions about the algorithm.
Interested in this research?
MHZ-Stellarator is a proprietary confinement prediction algorithm developed by OmegaForge. Research collaborations and licensing inquiries are welcome.