Understanding how soil systems respond to atmospheric forcing is critical not only for environmental science but also for defence operations requiring accurate terrain assessment. This study quantifies depth‑dependent and delayed soil responses to meteorological drivers using lag‑correlation analysis across six operational military monitoring stations (2022–2024). The results demonstrate that soil–atmosphere coupling exhibits strong station‑specific variability, with response times ranging from hours to several weeks depending on soil type and depth.
The analysis reveals weak instantaneous (lag 0) correlations but significantly delayed relationships, particularly in deeper soil layers, confirming that terrain conditions relevant for military mobility cannot be reliably inferred from current weather alone. Instead, cumulative and lagged atmospheric effects govern soil bearing capacity, trafficability, and subsurface stability.
These findings directly support defence applications, including terrain trafficability forecasting, planning of off‑road operations, sensor deployment optimization, and decision‑support systems. The proposed lag‑correlation framework provides a practical analytical tool to enhance situational awareness and operational readiness under dynamically changing meteorological conditions.