This work presents a meta-level framework that reorganizes several realization-based cosmological proposals within a unified structural coordinate system. The proposed 3D+2T meta framework distinguishes physical time evolution from realization depth, a meta-descriptive coordinate that characterizes the extent to which physical processes are instantiated, averaged, or suppressed. Rather than introducing new dynamics, degrees of freedom, or observational predictions, the framework clarifies why structurally similar explanatory patterns recur across independently developed models, including the Field–Fluctuation Universe (FFU), void cosmology, early massive object formation scenarios, and the Asymmetric Realization Principle (ARP). By separating questions of when physical processes occur from how fully they are realized, the framework provides an organizational lens for interpreting cosmological anomalies—such as galactic rotation curves, cosmic void properties, and observational tensions—without modifying the underlying physical theories. This work is intended as a conceptual and interpretive tool, offering a structural map rather than a new physical model, and may serve as a foundation for future theoretical synthesis and comparative analysis.
Jeong Jae Lee (Wed,) studied this question.