Adaptation of a Scientific Decision Support System to the Productive Sector—A Case Study: MOPECO Irrigation Scheduling Model for Annual Crops

Author:

Domínguez Alfonso1ORCID,Martínez-López José Antonio2ORCID,Amami Hacib3,Nsiri Radhouan4,Karam Fadi5,Oueslati Maroua6

Affiliation:

1. Centro Regional de Estudios del Agua (CREA), Universidad de Castilla La Mancha (UCLM), 02071 Albacete, Spain

2. Instituto Técnico Agronómico Provincial de Albacete (ITAP), 02071 Albacete, Spain

3. National Institute for Research in Rural Engineering, Water and Forests (INRGREF), B.P. 10, Ariana 2080, Tunisia

4. National Institute of Field Crops, Boussalem 8170, Tunisia

5. Faculty of Agronomy, Lebanese University, Beyrouth 1003, Lebanon

6. Euro-Mediterranean Information System on Know-How in the Water Sector (SEMIDE), 09560 Valbonne Sophia-Antipolis, France

Abstract

Despite the great number of models developed in research projects, only a small percentage have been successfully transferred to the productive sector. The PRIMA programme supported by Horizon 2020, the European Union Framework Programme for Research and Innovation, aims to reverse this situation. The SUPROMED project funded by PRIMA sought to develop an online platform composed of several models adapted to the requirements of end users for increasing the economic and environmental sustainability of Mediterranean agricultural systems. MOPECO, in its research version, was designed to maximize the profitability of irrigated farms in water-scarce regions. A simplified version of this model (MOPECO irrigation scheduling) was included in the SUPROMED platform for improving irrigation efficiency, providing farmers with a useful irrigation scheduling software. This paper shows the approach to adapt and transfer MOPECO to the productive sector. The tool was validated in three different demosite areas across the Mediterranean, involving local stakeholders in the design, validation, and dissemination of the software. The simplified tool reached similar or higher yields than farmers using less water. Thus, the average water saved was around 16%, while the average yield increased around 10% in the plots located in the three demosites of the project (Eastern Mancha in Spain, Bekaa valley in Lebanon, and Sidi Bouzid in Tunisia). This fact decreased the water footprint and increased the profitability of farms. The high applicability of the tool has generated interest among many technicians, farmers, and advisory enterprises. Furthermore, regional and national governmental extension services have shown interest in spreading the use of the tool across their territories, validating the methodology used for adapting and transferring a scientific model to the productive sector.

Funder

PRIMA

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference70 articles.

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