The SCFL Simulation Architecture v1.0 is a frozen, researcher‑grade specification defining how Standard Coherence Fidelity Layer (SCFL) simulations are constructed, executed, and evaluated across institutional, infrastructural, and synthetic environments. It provides a complete, replayable framework for generating coherence‑physics simulations that expose drift, instability, and rupture‑layer behavior under controlled perturbations. This architecture formalizes: A three‑layer physics stack (static SCFL v1.1, kinematic Scenario Flux, and dynamic Instability Program) A deterministic simulation engine with invariant timing windows, seam‑defined transitions, and non‑drifting operator behavior A perturbation protocol enabling controlled injections of stress, load, or environmental deformation A canonical workbook and metadata structure ensuring reproducibility, provenance, and cross‑institutional comparability A summary‑row output format that captures coherence, drift, and recoverability signatures in a reviewer‑safe, institution‑intuitive manner The SCFL Simulation Architecture is designed for scientific validation, early‑warning research, and comparative analysis across domains such as healthcare systems, grid infrastructure, financial drift, and synthetic testbeds. All parameters are locked ex‑ante to prevent post‑hoc tuning, ensuring that results remain reproducible, falsifiable, and suitable for archival publication. This artifact is frozen as v1.0 and serves as the canonical foundation for SCFL simulation work, including Tier‑0.5 demonstration cases and future benchmark expansions.
Ronald Brogdon (Tue,) studied this question.