Generolo Jono Žemaičio Lietuvos karo akademija logo


  • List of journals
  • About Publisher
Login Register

  1. Home
  2. Journals
  3. cndcgs
  4. Issues
  5. Volume 2026, Issue 1 (2026)
  6. Quantifying Soil–Atmosphere Interactions ...

Challenges to national defence in contemporary geopolitical situation

Information
  • Article info
  • Related articles
  • More
    Article info Related articles

Quantifying Soil–Atmosphere Interactions
Volume 2026, Issue 1 (2026), pp. 650–658
Vladimír RÉPAL   Kristýna SUKUPOVÁ  

Authors

 
Placeholder
https://doi.org/10.47459/cndcgs.2026.75
Pub. online: 9 July 2026      Type: Article      Open accessOpen Access

Published
9 July 2026

Abstract

Understanding how soil systems respond to atmospheric forcing requires analytical approaches capable of capturing not only instantaneous interactions but also delayed, cumulative, or depth‑dependent effects. In this study, we quantify the lagged response of soil‑moisture sensor to key meteorological variables across six monitoring stations, over the period 2022–2024. The meteorological dataset includes daily series of mean air temperature, total daily precipitation, sunshine duration, mean relative humidity and mean wind speed, while soil measurements represent three vertically installed within the natural soil profile moisture sensors with differing depths and thermal-hydric sensitivities. The resulting lag‑correlation heatmaps reveal that the soil–atmosphere coupling is highly station‑specific, displaying substantial variation in both the timing and the sign of the soil response. This analysis evaluates the instantaneous (lag 0) statistical relationships between daily meteorological variables and soil-profile responses at three depths (10 cm, 50 cm, 90 cm). Using Pearson correlation coefficients, we characterize how near-surface and sub‑surface layers respond to atmospheric forcing without temporal offset. The results confirm that day‑to‑day correlations are weak, especially in deeper horizons, reflecting the inherent delayed propagation of thermal and hydrological signals into the soil profile.

Related articles PDF XML
Related articles PDF XML

Copyright
No copyright data available.
by logo by logo
Creative Commons Attribution International License (CC BY)

Keywords
soil moisture sensors lag‑correlation analysis soil–atmosphere interactions meteorological drivers time‑series analysis heatmap visualization

Metrics
since October 2020
15

Article info
views

0

Full article
views

13

PDF
downloads

13

XML
downloads

Export citation

Copy and paste formatted citation
Placeholder

Download citation in file


Share


RSS

Generolo Jono Žemaičio Lietuvos karo akademija Šilo g. 5A., LT-10322 Vilnius, el.p: lka@mil.lt

General Jonas Žemaitis Military Academy of Lithuania  Šilo Str. 5A, LT-10322 Vilnius, Lithuania, e-mail: lka@mil.lt

Powered by PubliMill  •  Privacy policy