Title of article :
An overview of the crop model sticks
Author/Authors :
ROCHE، W. R. نويسنده , , Zimmer، D. نويسنده , , Mary، B. نويسنده , , Brisson، N. نويسنده , , Gary، C. نويسنده , , Justes، E. نويسنده , , Ripoche، D. نويسنده , , Sierra، J. نويسنده , , Bertuzzi، P. نويسنده , , Burger، P. نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Abstract :
Stick is a model that has been developed at INRA (France) since 1996. It simulates crop growth as well as soil water and nitrogen balances driven by daily climatic data. It calculates both agricultural variables (yield, input consumption) and environmental variables (water and nitrogen losses). From a conceptual point of view, stick relies essentially on well-known Arelationships or on simplifications of existing models. One of the key elements of stick is its adaptability to various crops. This is achieved by the use of generic parameters relevant for most crops and on options in the model formalisations concerning both physiology and management, that have to be chosen for each crop. All the users of the model form a group that participates in making the model and the software evolve, because stick is not a fixed model but rather an interactive modelling platform. This article presents version 5.0 by giving details on the model formalisations concerning shoot ecophysiology, soil functioning in interaction with roots, and relationships between crop management and the soil–crop system. The data required to run the model relate to climate, soil (water and nitrogen initial profiles and permanent soil features) and crop management. The species and varietal parameters are provided by the specialists of each species. The data required to validate the model relate to the agronomic or environmental outputs at the end of the cropping season. Some examples of validation and application are given, demonstrating the generality of the stick model and its ability to adapt to a wide range of agro-environmental issues. Finally, the conceptual limits of the model are discussed.
Keywords :
TiNi film , Oriented martensite , Self-accommodating martensite , transformation
Journal title :
EUROPEAN JOURNAL OF AGRONOMY
Journal title :
EUROPEAN JOURNAL OF AGRONOMY