← Papers

Unverified paper record

Salinity stress and water availability inferred from satellite leaf area index assimilated into a water-energy-crop model

Precision Agriculture · 1 Dec 2025

Abstract

PURPOSE: Climate change, increasing aridity, water scarcity and population growth, enhancing food demand and irrigated land expansion, are expected to increase the extent of salinity-affected areas. This study aims to combine the crop-energy-water balance model FEST-EWB-SAFY with Leaf Area Index (LAI) and Land Surface Temperature (LST) data from remote sensing to monitor maize development in a field with a shallow water table and highly affected by salinity. METHODS: The FEST-EWB-SAFY model couples the distributed energy-water balance FEST-EWB model, which computes time-continuous soil moisture and evapotranspiration, and the SAFY crop model for yield prediction. The model was employed in synergy with satellite observations of LST and LAI. LST was used for the calibration/validation of the water and energy balances, whereas LAI was used both for the calibration of crop parameters and a data assimilation scheme. RESULTS: The data assimilation scheme was able to reproduce the observed spatial heterogeneity in crop development, associated to the uneven water table depth and salinity distribution, as these effects were picked up from satellite. A good correspondence was also found between modelled yield and the distributed samplings from a combined harvester equipped with a yield monitor. CONCLUSION: The results, comparable to those obtained with the a posteriori calibration, show that data assimilation of remote sensing observations allow to improve the model as the agricultural season progresses, including information which is difficult to monitor continuously in-situ.

Plant phenotyping relevance

衛星リモートセンシングによるLAI・LST観測を作物モデルに同化し、圃場内のトウモロコシの発達と空間的不均一性を推定する技術的ワークフローが中心である。

abstractThe model was employed in synergy with satellite observations of LST and LAI.
abstractThe data assimilation scheme was able to reproduce the observed spatial heterogeneity in crop development
abstractLAI was used both for the calibration of crop parameters and a data assimilation scheme.

Code and data availability

公開状態または取得可能な本文経路を確認できませんでした。

No evidence-backed public reproduction asset is currently recorded.

This is an automatically classified, unverified record. Curator approval is required before any resource enters the Catalog.