Publication Abstracts
Monhollon et al. 2026
, , and W.D. Batchelor, 2026: LAI assimilation schedules to constrain uncertain cultivars and soils in CERES-Maize. Comput. Electron. Agr., 251, 111978, doi:10.1016/j.compag.2026.111978.
In anticipation of large-domain crop model applications where precise local configuration and calibration is not possible, we describe benefits and potential drawbacks of employing a crop pest module to achieve leaf area index (LAI) assimilation into a high performing CERES-Maize crop model configuration at a field experiment site in Perry, Iowa. Simulation experiments explore the use of MODIS satellite-derived LAI to constrain and adjust LAI to counter imprecise cultivar and soil configurations often occurring in the absence of high-quality local information. Simulations using single-day, window, and continuous LAI replacement across 5 cultivars and 2 soil calibration approaches for nine corn rotation years from 2004 to 2020 led to different yield outcomes and reverberations throughout the field environment. Evaluating variance and mean bias, results indicate minimal interventions in early vegetative and grain-filling stages were more beneficial than use of continuous LAI adjustments, as they minimized disruptions to the internal resource balances governing plant stresses and grain production. LAI adjustment was particularly helpful in constraining growth related to uncertain thermal unit requirements and leaf tip appearance rates (P1 and PHINT cultivar parameters, respectively). Findings underscore the need to assimilate additional state variables to ensure internal biophysical coherence. This approach shows promise for applications spanning wider domains with prediction time pressure where detailed configuration, more complex assimilation methods, or recalibration of crop model parameters may not be practical.
Export citation: [ BibTeX ] [ RIS ]
BibTeX Citation
@article{mo00500y,
author={Monhollon, L. and Ruane, A. C. and Batchelor, W. D.},
title={LAI assimilation schedules to constrain uncertain cultivars and soils in CERES-Maize},
year={2026},
journal={Computers and Electronics in Agriculture},
volume={251},
pages={111978},
doi={10.1016/j.compag.2026.111978},
}
[ Close ]
RIS Citation
TY - JOUR ID - mo00500y AU - Monhollon, L. AU - Ruane, A. C. AU - Batchelor, W. D. PY - 2026 TI - LAI assimilation schedules to constrain uncertain cultivars and soils in CERES-Maize JA - Comput. Electron. Agr. JO - Computers and Electronics in Agriculture VL - 251 SP - 111978 DO - 10.1016/j.compag.2026.111978 ER -
[ Close ]

