CoolFace
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ClarusC64/fusion-msr-redox-corrosion-drift-detection-v0.1

Dataset goal Detect the onset of corrosive regime drift in molten-salt reactor systems. This dataset models when stable chemistry-materials coherence begins to failand transitions toward a corrosive regime. Required outputs drift_indicator corrosive_regime_flag onset_risk_score dominant_driver minimal_intervention What it tests Whether a model can detect: redox imbalance temperature-driven corrosion drift fission-product chemistry… See the full description on the dataset page: https://huggingface.co/datasets/ClarusC64/fusion-msr-redox-corrosion-drift-detection-v0.1.

sourceHugging Facemitupdated 8mo agoView on Hugging Face
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Dataset goal

Detect the onset of corrosive regime drift in molten-salt reactor systems.

This dataset models when stable chemistry-materials coherence begins to fail and transitions toward a corrosive regime.

Required outputs

  • —drift_indicator
  • —corrosiveregimeflag
  • —onsetriskscore
  • —dominant_driver
  • —minimal_intervention

What it tests

Whether a model can detect:

  • —redox imbalance
  • —temperature-driven corrosion drift
  • —fission-product chemistry loading
  • —early corrosive regime formation

before structural failure occurs.

Why it matters

MSR systems degrade gradually. The earliest warning is not high corrosion alone. It is the decoupling between:

redox control salt chemistry material response

Detecting drift early allows intervention while the system is still recoverable.

Trinity position

Layer 2 of the MSR corrosion-coherence trinity:

  1. 1.Baseline mapping
  2. 2.Drift detection
  3. 3.Failure horizon routing