Related Experiment Video
Updated: May 21, 2025

Automated Deployment of an Internet Protocol Telephony Service on Unmanned Aerial Vehicles Using Network Functions Virtualization
Published on: November 26, 2019
A First Verification of Sim2DSphere Model's Ability to Predict the Spatiotemporal Variability of Parameters
Christina Lekka1, George P Petropoulos1, Spyridon E Detsikas1
1Department of Geography, Harokopio University of Athens, El. Venizelou St., 70, 17671 Athens, Greece.
Abstract:
Land-atmosphere interactions (LSIs) involve intricate complex processes that drive critical exchanges of energy and matter that influence ecosystem and climate dynamics, with variations in ecosystem responses and feedback effects depending on their specific environmental characteristics. To this end, this study represents the first extensive validation of the Sim2DSphere model, to establish its coherence and use in the study of LSIs across a range of biomes and climatic zones. For this purpose, water and energy fluxes from a total of 10 eddy covariance sites and a total of 12 calendar days were analyzed. Earth observation (EO) data were integrated with ground observations at the different sites to execute the Sim2DSphere model. The diurnal dynamics of energy fluxes were compared against corresponding ground measurements. The results showed that the highest accuracy was observed for the grassland sites (R2 from >0.85; RMSE < 68.50 Wm-2), whereas the lowest accuracy was found in forest sites (R2 from >0.80; RMSE < 75.0 Wm-2). All in all, these initial results obtained herein are very promising and demonstrate the models' promising potential in the study of LSIs at variant spatiotemporal resolutions.

