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dc.contributor.authorMillán, Sandra
dc.contributor.authorCasadesus, Jaume
dc.contributor.authorVadillo, Jose María
dc.contributor.authorCampillo, Carlos
dc.contributor.otherProducció Vegetalca
dc.date.accessioned2026-02-09T17:29:56Z
dc.date.available2026-02-09T17:29:56Z
dc.date.issued2025-12-26
dc.identifier.issn2311-7524ca
dc.identifier.urihttp://hdl.handle.net/20.500.12327/5069
dc.description.abstractThe increasing frequency and intensity of droughts, a direct consequence of climate change, represent one of the main threats to agriculture, especially for crops with a high water demand such as the processing tomato. The objective of this study is to evaluate the potential of the IrriDesK digital twin (DT) as a tool for automated irrigation management and the implementation of regulated deficit irrigation (RDI) strategies tailored to the crop’s water status and phenological stage. The trial was conducted in an experimental plot over two consecutive growing seasons (2023–2024), comparing three irrigation treatments: full irrigation based on lysimeter measurements (T1) and two RDI strategies programmed through IrriDesK (T2 and T3). The results showed water consumption reductions of 30–45% in treatments T2 and T3 compared to treatment T1, with applied volumes of 277–400 mm versus approximately 570 mm in treatment T1, thus remaining within the sustainability threshold (<500 mm, equivalent to 5000 m3 ha−1 ). This threshold corresponds to the maximum seasonal allocation typically available for processing tomato under drought conditions in the region and was used to configure the DT’s seasonal irrigation plan. The monitoring of leaf water potential (Ψleaf) and the normalized difference vegetation index (NDVI) confirmed the DT’s ability to dynamically adjust irrigation and maintain an adequate water status during critical crop phases. In terms of productivity, treatment T1 achieved the highest yields (≈135 t ha−1 ), while RDI strategies reduced production to 90–108 t ha−1 , but improved fruit quality, with increases in total soluble solids content of up to 10–15% (◦Brix). These results demonstrate that IrriDesK is an effective tool for the optimization of water use while maintaining crop profitability and enhancing the resilience of processing tomatoes to drought scenarios.ca
dc.description.sponsorshipET4DROUGHT (PID2021-127345OR-C33) and DigiSPAC (TED2021-131237B-C22) projects funded by the Ministry of Science, Innovation and Universities/State Research Agency/10.13039/501100011033 co-financed by ERDF a way of making Europe and by EU Next Generation/Spanish Recovery, Transformation and Resilience Plan.ca
dc.format.extent25ca
dc.language.isoengca
dc.publisherMDPIca
dc.relation.ispartofHorticulturaeca
dc.rightsAttribution 4.0 Internationalca
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/*
dc.titleDigital Twin Irrigation Strategies to Mitigate Drought Effects in Processing Tomatoesca
dc.typeinfo:eu-repo/semantics/articleca
dc.description.versioninfo:eu-repo/semantics/publishedVersionca
dc.rights.accessLevelinfo:eu-repo/semantics/openAccess
dc.embargo.termscapca
dc.relation.projectIDMICIU/Programa Estatal para Impulsar la Investigación Científico-Técnica y su Transferencia/PID2021-127345OR-C33/ES/VALIDACION Y APLICABILIDAD DE ET DE TELEDETECCION Y PARAMETROS BIOFISICOS DE LA VEGETACION PARA EL MANEJO DEL RIEGO A ESCALA DE CAMPO/ET4DROUGHTca
dc.relation.projectIDMICINN/Programa Estatal para impulsar la investigación científico-técnica y su transferencia/TED2021-131237B-C22/ES/Evaluation of the digital twin paradigm applied to precision irrigation/DigiSPACca
dc.relation.projectIDFEDER/ / /EU/ /ca
dc.subject.udc634ca
dc.identifier.doihttps://doi.org/10.3390/horticulturae12010028ca
dc.contributor.groupÚs Eficient de l'Aigua en Agriculturaca


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Attribution 4.0 International
Except where otherwise noted, this item's license is described as http://creativecommons.org/licenses/by/4.0/
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