Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Crop Model Parameterisation of Three Important Pearl Millet Varieties for Improved Water Use and Yield Estimation

Domain:

agriculture
Creator:
PetJohJoaAnd
Publisher:
MDP
Host:
Pearl millet is an important crop for food security in Asia and Africa’s arid and semi-arid regions. It is widely grown as a staple cereal grain for human consumption and livestock fodder. Mechanistic crop growth and water balance models are useful to forecast crop production and water use. However, very few studies have been devoted to the development of the model parameters needed for such simulations for pearl millet. The objectives of the study were to determine crop-specific model parameters for each of three pearl millet varieties (landrace, hybrid, and improved), as well as to calibrate and validate the Soil Water Balance (SWB) model for predicting pearl millet production and water use based on weather data. The SWB was chosen because it is widely used in southern Africa; however, the developed parameters should benefit other models as well. The presented crop-specific parameter values were derived from field observations and literature. Varieties with different phenology, maturity dates and tillering habits were grown under well-watered and well-fertilised conditions for calibration purposes. The calibrated model was used to predict biomass production, grain yield and crop water use. The hybrid’s water use efficiency was higher than that of the landrace and improved variety.

Visit

doi.org

Licenses

https://creativecommons.org/licenses/by/4.0/

Similar

Effects of Phosphorus and Water Supply on Yield, Transpirational Water‐Use Efficiency, and Carbon Isotope Discrimination of Pearl MilletBreeding Biofortified Pearl Millet Varieties and Hybrids to Enhance Millet Markets for Human NutritionYield stability assessment -- Rice and Pearl millet dataRoots traits for improved pearl millet tolerance to drought stressImproved Crop Varieties, Agronomic Practices, Soil Water Conservation PracticesSimulating pearl millet growth and yield with DSSAT-CERES-millet model: Evaluating climate-smart practices for uptake across diverse environments in Senegal

Effects of Phosphorus and Water Supply on Yield, Transpirational Water‐Use Efficiency, and Carbon Isotope Discrimination of Pearl Millet

Several studies have identified low soil P and water availability as major constraints to pearl mill

Breeding Biofortified Pearl Millet Varieties and Hybrids to Enhance Millet Markets for Human Nutrition

Pearl millet is an important food crop in the arid and semi-arid tropical regions of Africa and Asia

Yield stability assessment -- Rice and Pearl millet data

1. Sadoré , Niger: Data are from field experiments carried out at ICRISAT research station (13.25°N,

Roots traits for improved pearl millet tolerance to drought stress

International audience Pearl millet is an important crop for food security in arid an

Improved Crop Varieties, Agronomic Practices, Soil Water Conservation Practices

Establishment of demonstration plots on improved crop varieties (maize, groundnuts, soybeans and bea

Simulating pearl millet growth and yield with DSSAT-CERES-millet model: Evaluating climate-smart practices for uptake across diverse environments in Senegal

Abstract Background: Evaluating crop