Forcing Diagnostic — Atmosphere Module
TriadicFrameworks Canon
The Forcing Diagnostic evaluates atmospheric forcing behavior across micro → meso → macro → mega scales. It interprets radiative forcing, mechanical forcing, thermodynamic forcing, mass forcing, and cross‑domain forcing. It is the human‑readable companion to:
forcing_diagnostic.jsonforcing_diagnostic.min.jsonforcing_diagnostic.schema.jsonforcing_map.mdforcing_envelope.mdforcing_trace.md
1. Diagnostic Purpose#
The Forcing Diagnostic provides:
- radiative forcing interpretation
- mechanical forcing evaluation
- thermodynamic forcing assessment
- mass forcing detection
- cross‑domain forcing analysis
- operator‑aligned forcing signatures
- stability and regime classification
It is used by envelopes, maps, and traces to interpret forcing behavior.
2. Forcing Fields#
Radiative Forcing#
- shortwave solar input
- longwave terrestrial emission
- greenhouse trapping
- albedo feedback
Mechanical Forcing#
- wind shear
- terrain‑driven forcing
- frictional forcing
- wave‑driven forcing
Thermodynamic Forcing#
- latent heat release
- sensible heat flux
- radiative imbalance
- convective forcing
Mass Forcing#
- pressure gradients
- density transitions
- moisture loading
Cross‑Domain Forcing#
- ocean → radiative forcing
- cryosphere → albedo forcing
- land → mechanical forcing
- biosphere → latent forcing
- magnetosphere → upper‑atmosphere forcing
3. Operator Alignment#
Forcing Operators#
- radiative_forcing_analysis
- mechanical_forcing_alignment
- thermodynamic_forcing_detection
- mass_forcing_evaluation
Continuity Operators#
- forcing_continuity
- gradient_continuity
Coherence Operators#
- stable_forcing_regime
- coherent_forcing_behavior
Clarity Operators#
- forcing_signal_clarity
- noise_reduction
Dimensional Operators#
- micro → meso forcing scaling
- meso → macro forcing propagation
Drift Operators#
- forcing_instability_propagation
- forcing_drift_detection
Paradox Operators#
- conflicting_forcing_signals
- inversion_paradox
Resonance Operators#
- forcing‑driven oscillations
- harmonic forcing alignment
4. Thresholds#
- forcing_clarity_min: 0.7
- forcing_stability_min: 0.6
- forcing_noise_max: 50
Thresholds determine regime classification and operator activation.
5. Regime Zones#
Stable#
- balanced radiative forcing
- coherent mechanical forcing
- predictable thermodynamic forcing
Transition#
- radiative imbalance
- shear‑driven instability
- latent‑heat release bursts
Unstable#
- convective forcing surges
- rapid pressure‑gradient collapse
- forcing‑driven regime disruption
6. Diagnostic Output#
The Forcing Diagnostic produces:
Clarity#
- high
- medium
- low
Stability#
- stable
- transition
- unstable
Signature#
- radiative_signature
- mechanical_signature
- thermodynamic_signature
- mass_signature
- cross_domain_signature
Operators Triggered#
- forcing
- continuity
- coherence
- clarity
7. Example#
See forcing_diagnostic.example.json for a complete example input/output pair.
8. Seven‑Phase Alignment#
Forcing Diagnostic participates in:
- Forcing (primary phase)
- Composition
- Dynamics
- Thermodynamics
- Hydrospheric Coupling
- Regime Transitions
- Resonance & Coherence
9. Status#
Forcing Diagnostic is:
- canon‑aligned
- structurally complete
- operator‑aligned
- schema‑compatible
- ready for diagnostic integration
