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Climate services for water utilities: Lessons learnt from the case of the urban water supply to Valencia, Spain

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Climate services for water utilities: Lessons learnt from the case of the urban water supply to Valencia, Spain

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dc.contributor.author Rubio-Martín, Adrià es_ES
dc.contributor.author Llario, Ferran es_ES
dc.contributor.author Macian-Sorribes, Hector es_ES
dc.contributor.author Pulido-Velazquez, M. es_ES
dc.contributor.author Garcia-Prats, Alberto es_ES
dc.contributor.author Macián Cervera, Vicente Javier es_ES
dc.date.accessioned 2023-07-17T18:02:07Z
dc.date.available 2023-07-17T18:02:07Z
dc.date.issued 2023-01-31 es_ES
dc.identifier.uri http://hdl.handle.net/10251/195071
dc.description.abstract [EN] Climate change projections in many regions of the world show a critical reduction in precipitation and a significant rise in temperatures in the following decades. This change may affect the operation of water utilities in arid and semi-arid parts of the globe. The Mediterranean region is particularly vulnerable to the impacts of climate change on water resources. In this paper, we reflect on the challenges that the water utility sector may experience during the upcoming decades to continue providing its essential service under the new climate scenario. Our reasoning is based on the lessons learned during the co-creation of a climate service with the water utility company of Valencia (Spain) within the framework of the EU ERA4CS project INNOVA. The joint vision of climate, water management researchers and water utility operators resulted in a multi-scale framework for evaluating the vulnerability of the water utility to climate change. The modelling framework couples water quantity and quality and their interaction in a chain of models. The proposed framework forced all parties to consider the issue of the temporal and spatial scales, and the importance of choosing and defining the boundaries of the problem. The analytical framework has three distinct elements: (1) a combination of climate projections; (2) hydrological and water resource management model of the river basin system; (3) reservoir management and water quality model. Two Representative Concentration Pathways (RCP) 4.5 and 8.5 were considered in two timeframes for the analysis: the short term (2020¿2040) and the medium term (2041¿2069). The results show a significant reduction in water availability combined with an increased frequency and intensity of phytoplankton blooms and anoxia episodes. These changes result in the deterioration of the reservoir trophic state, shifting from ultraoligotrophic-oligotrophic (control period) to oligotrophic-mesotrophic (RCP 8.5). The example shows how the combination of models on different scales and the involvement of experts in the co-creation process can result in a customized climate service that provides valuable information to water utility operators that can be used to reduce the system¿s vulnerability to climate change. es_ES
dc.description.sponsorship This research was supported by the INNOVA, ADAPTAMED, SAPIDES, and WATER4CAST projects. The Innovation of Climate Services (INNOVA) project is funded by the European Research Area for Climate Services Consortium (ER4CS) and the Agencia Estatal de Investigacion of the Spanish government (GA: 690462; PCIN-2017-066). The ADAP-TAMED project is funded by the Ministerio de Ciencia e Innovacion of Spain (RTI2018-101483-B-I00), including EU FEDER funds. SAPIDES (INNEST/2021/276) is funded by the Agencia Valenciana de la Innovacio (AVI). Lastly, WATER4CAST (PROMETEO/2021/074) is funded by the Generalitat Valenciana through the Conselleria de Innovacion, Universidades, Ciencia y Sociedad Digital. es_ES
dc.language Inglés es_ES
dc.publisher Elsevier es_ES
dc.relation.ispartof Climate Services es_ES
dc.rights Reconocimiento - No comercial - Sin obra derivada (by-nc-nd) es_ES
dc.subject Climate services es_ES
dc.subject Vulnerability assessment es_ES
dc.subject Climate adaptation es_ES
dc.subject Water utility es_ES
dc.subject Climate projections es_ES
dc.subject Water supply es_ES
dc.subject Mediterranean water resources es_ES
dc.subject Resilient cities es_ES
dc.subject.classification INGENIERIA HIDRAULICA es_ES
dc.title Climate services for water utilities: Lessons learnt from the case of the urban water supply to Valencia, Spain es_ES
dc.type Artículo es_ES
dc.identifier.doi 10.1016/j.cliser.2022.100338 es_ES
dc.relation.projectID info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación (PEICTI) 2013-2016/PCIN-2017-066/ES/INNOVACION EN LA PROVISION DE SERVICIOS CLIMATICOS/ es_ES
dc.relation.projectID info:eu-repo/grantAgreement/AGENCIA VALENCIANA DE LA INNOVACION//INNEST%2F2021%2F276//PREDICCIÓN DE COMPUESTOS SÁPIDOS EN EL AGUA PREPOTABLE PARA LA MEJORA DE SU GESTIÓN Y ADAPTACIÓN AL CAMBIO CLIMÁTICO/ es_ES
dc.relation.projectID info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/RTI2018-101483-B-I00/ES/PLANIFICACION, DISEÑO Y EVALUACION DE LA ADAPTACION DE CUENCAS MEDITERRANEAS A ESCENARIOS SOCIOECONOMICOS Y DE CAMBIO CLIMATICO/ es_ES
dc.relation.projectID info:eu-repo/grantAgreement/GENERALITAT VALENCIANA//PROMETEO%2F2021%2F074//INtegrated FORecasting System for Water and the Environment (WATER4CAST)/ es_ES
dc.relation.projectID info:eu-repo/grantAgreement/EC/H2020/690462/EU es_ES
dc.rights.accessRights Abierto es_ES
dc.contributor.affiliation Universitat Politècnica de València. Instituto Universitario de Ingeniería del Agua y del Medio Ambiente - Institut Universitari d'Enginyeria de l'Aigua i Medi Ambient es_ES
dc.contributor.affiliation Universitat Politècnica de València. Escuela Técnica Superior de Ingenieros de Caminos, Canales y Puertos - Escola Tècnica Superior d'Enginyers de Camins, Canals i Ports es_ES
dc.contributor.affiliation Universitat Politècnica de València. Escuela Técnica Superior de Ingeniería Agronómica y del Medio Natural - Escola Tècnica Superior d'Enginyeria Agronòmica i del Medi Natural es_ES
dc.description.bibliographicCitation Rubio-Martín, A.; Llario, F.; Macian-Sorribes, H.; Pulido-Velazquez, M.; Garcia-Prats, A.; Macián Cervera, VJ. (2023). Climate services for water utilities: Lessons learnt from the case of the urban water supply to Valencia, Spain. Climate Services. 29:1-13. https://doi.org/10.1016/j.cliser.2022.100338 es_ES
dc.description.accrualMethod S es_ES
dc.relation.publisherversion https://doi.org/10.1016/j.cliser.2022.100338 es_ES
dc.description.upvformatpinicio 1 es_ES
dc.description.upvformatpfin 13 es_ES
dc.type.version info:eu-repo/semantics/publishedVersion es_ES
dc.description.volume 29 es_ES
dc.identifier.eissn 2405-8807 es_ES
dc.relation.pasarela S\478965 es_ES
dc.contributor.funder European Commission es_ES
dc.contributor.funder GENERALITAT VALENCIANA es_ES
dc.contributor.funder AGENCIA ESTATAL DE INVESTIGACION es_ES
dc.contributor.funder AGENCIA VALENCIANA DE LA INNOVACION es_ES
dc.subject.ods 03.- Garantizar una vida saludable y promover el bienestar para todos y todas en todas las edades es_ES
dc.subject.ods 06.- Garantizar la disponibilidad y la gestión sostenible del agua y el saneamiento para todos es_ES
dc.subject.ods 09.- Desarrollar infraestructuras resilientes, promover la industrialización inclusiva y sostenible, y fomentar la innovación es_ES
dc.subject.ods 11.- Conseguir que las ciudades y los asentamientos humanos sean inclusivos, seguros, resilientes y sostenibles es_ES
dc.subject.ods 13.- Tomar medidas urgentes para combatir el cambio climático y sus efectos es_ES
dc.subject.ods 15.- Proteger, restaurar y promover la utilización sostenible de los ecosistemas terrestres, gestionar de manera sostenible los bosques, combatir la desertificación y detener y revertir la degradación de la tierra, y frenar la pérdida de diversidad biológica es_ES


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