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Fluorescence de la chlorophylle×Modèles de croissance des cultures (DSSAT/APSIM)×Équation de Penman-Monteith×
DomaineAgronomieAgronomieAgronomie
FamilleProcess / pipelineProcess / pipelineProcess / pipeline
Année d'origine1931-20041993-20031948-1965
Auteur d'origineHans Kautsky, Ulrich Schreiber, Reto J. StrasserJames W. Jones, Gerbrand T. Hoogenboom (DSSAT); Brian A. Keating, Peter S. Carberry (APSIM)Howard Latimer Penman, John Monteith
TypeNon-invasive photosynthetic measurementMechanistic crop simulation pipelineMechanistic evapotranspiration model
Source fondatriceKautsky, H., & Hirsch, A. (1931). Neue Versuche zur Klärung der Assimilationstätigkeit. Naturwissenschaften, 19(48), 964-964. link ↗Jones, J. W., Hoogenboom, G., Porter, C. H., et al. (2003). The DSSAT cropping system model. European Journal of Agronomy, 18(3-4), 235-265. DOI ↗Penman, H. L. (1948). Natural evaporation from open water, bare soil and grass. Proceedings of the Royal Society A, 193(1032), 120-145. DOI ↗
AliasFluorescence, Fv/Fm, OJIP curve, PAM fluorometryDSSAT, APSIM, Crop Simulation ModelPM Equation, FAO-56 PM, Evapotranspiration Model
Apparentées333
RésuméChlorophyll fluorescence is a non-invasive optical measurement of how efficiently the photosynthetic machinery converts absorbed light into chemical energy (photosynthesis) or heat and light (fluorescence). When photosynthesis is inhibited by stress (drought, cold, salt, pests), chlorophyll fluorescence increases because excitation energy cannot be used for photosynthesis and must be released as light or heat. Fluorescence parameters (Fv/Fm, OJIP curves) act as sensitive, rapid indicators of photosynthetic stress, enabling early detection of plant dysfunction before visible symptoms appear.Crop growth models are mechanistic simulation systems designed to predict crop development, biomass accumulation, and yield under varying environmental and management conditions. DSSAT (Decision Support System for Agrotechnology Transfer) and APSIM (Agricultural Production Systems Simulator) are the most widely used platforms, developed in the 1990s-2000s to support agronomic decision-making and climate adaptation research.The Penman-Monteith equation is a mechanistic model for estimating evapotranspiration (ET), the combined loss of water from soil and plant canopies to the atmosphere. First proposed by Penman (1948) for bare soil and water surfaces, then extended by Monteith (1965) to incorporate plant resistance to water vapor diffusion, it has become the international standard for water balance studies, crop water requirement calculation, and hydrological modeling.
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ScholarGateComparer des méthodes: Chlorophyll Fluorescence · Crop Growth Model · Penman-Monteith Equation. Consulté le 2026-06-20 sur https://scholargate.app/fr/compare