概要

Teleconnection Diagnostic — Atmosphere Module

TriadicFrameworks Canon

The Teleconnection Diagnostic evaluates long‑range atmospheric coupling across planetary scales. It interprets planetary wave propagation, oscillation regimes, coherence corridors, global coupling behavior, and operator‑aligned teleconnection signatures. It is the human‑readable companion to:

  • teleconnection_diagnostic.json
  • teleconnection_diagnostic.min.json
  • teleconnection_diagnostic.schema.json
  • teleconnection_map.md
  • teleconnection_envelope.md
  • teleconnection_trace.md

1. Diagnostic Purpose#

The Teleconnection Diagnostic provides:

  • planetary wave interpretation
  • oscillation regime evaluation
  • coherence corridor assessment
  • global coupling detection
  • operator‑aligned teleconnection signatures
  • stability and regime classification

It is used by envelopes, maps, and traces to interpret global atmospheric behavior.


2. Teleconnection Fields#

Planetary Waves#

  • Rossby wave trains
  • Kelvin wave pathways
  • mixed‑mode wave interactions
  • hemispheric wave bridges

Oscillation Regimes#

  • ENSO (El Niño / La Niña)
  • NAO (North Atlantic Oscillation)
  • AO (Arctic Oscillation)
  • MJO (Madden–Julian Oscillation)
  • PDO (Pacific Decadal Oscillation)

Coherence Corridors#

  • stable teleconnection channels
  • partial coherence zones
  • broken coherence pathways

Global Coupling#

  • cross‑basin oscillation links
  • polar → midlatitude → tropical coupling
  • hemispheric regime transitions

3. Operator Alignment#

Teleconnection Operators#

  • wave_continuity
  • oscillation_alignment
  • coherence_detection
  • regime_transition_analysis

Continuity Operators#

  • wave_continuity
  • oscillation_continuity

Coherence Operators#

  • stable_coherence
  • partial_coherence
  • broken_coherence

Clarity Operators#

  • oscillation_signal_clarity
  • noise_reduction

Dimensional Operators#

  • micro → meso wave scaling
  • meso → macro oscillation alignment

Drift Operators#

  • teleconnection_instability_propagation
  • oscillation_drift_detection

Paradox Operators#

  • conflicting_regime_signals
  • inversion_paradox

Resonance Operators#

  • global oscillation amplification
  • harmonic teleconnection alignment

4. Thresholds#

  • coherence_min: 0.7
  • stability_min: 0.6
  • wave_noise_max: 50

Thresholds determine regime classification and operator activation.


5. Regime Zones#

Stable#

  • coherent wave trains
  • predictable oscillation cycles
  • strong cross‑basin coupling

Transition#

  • oscillation phase shifts
  • partial coherence breakdown
  • mixed‑mode interference

Unstable#

  • wave collapse
  • oscillation reversal
  • global regime disruption

6. Diagnostic Output#

The Teleconnection Diagnostic produces:

Clarity#

  • high
  • medium
  • low

Stability#

  • stable
  • transition
  • unstable

Signature#

  • wave_alignment
  • oscillation_regime
  • coherence_corridor
  • global_coupling

Operators Triggered#

  • teleconnection
  • continuity
  • coherence
  • clarity

7. Example#

See teleconnection_diagnostic.example.json for a complete example input/output pair.


8. Seven‑Phase Alignment#

Teleconnection Diagnostic participates in:

  1. Composition
  2. Forcing
  3. Dynamics
  4. Thermodynamics
  5. Hydrospheric Coupling
  6. Regime Transitions (primary phase)
  7. Resonance & Coherence

9. Status#

Teleconnection Diagnostic is:

  • canon‑aligned
  • structurally complete
  • operator‑aligned
  • schema‑compatible
  • ready for diagnostic integration

Updated