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Financement de l’UE (4 992 761 €) : Redéfinir les propriétés des fluides géothermiques dans des conditions extrêmes afin d’optimiser l’extraction future de l’énergie géothermique Hor 01/01/2020 Programme de recherche et d'innovation de l'UE « Horizon »

Texte

Redéfinir les propriétés des fluides géothermiques dans des conditions extrêmes afin d’optimiser l’extraction future de l’énergie géothermique

The efficiency of geothermal utilisation depends heavily upon the behaviour of the fluids that transfer heat between the geosphere and the engineered components of a power plant. Chemical or physical processes such as precipitation, corrosion, or degassing occur as pressure and temperature change with serious consequences for power plant operations and project economics. Currently, there are no standard solutions for operators to deal with these challenges. The aim of REFLECT is to avoid the problems related to fluid chemistry rather than treat them. This requires accurate predictions and thus a thorough knowledge of the physical and chemical properties of the fluids throughout the geothermal loop. These properties are often only poorly defined, as in situ sampling as well as measurements at extreme conditions are hardly possible to date. As a consequence, large uncertainties in current model predictions prevail, which will be tackled in REFLECT by collecting new, high quality data in critical areas. The proposed approach includes advanced fluid sampling techniques, the measurement of fluid properties at in situ conditions, and the exact determination of key parameters controlling precipitation and corrosion processes. The sampled fluids and measured fluid properties cover a large range of salinity and temperature, including those from enhanced and super-hot geothermal systems. The data obtained will be implemented in a European geothermal fluid atlas and in predictive models that both ultimately allow to adjust operational conditions and power plant layout to prevent unwanted reactions before they occur. That way, recommendations can be derived on how to best operate geothermal systems for sustainable and reliable electricity generation, advancing from an experience-based to a knowledge-based approach.


Asociatia Nationala a Profesionistilor Din Geologie si Minerit 0,00 €
Associação Portuguesa de Geologos 0,00 €
Belgisch-Luxemburgse Unie Van Geologen 0,00 €
Bulgarsko Geologichesko Druzhestvo 0,00 €
Bureau de Recherches Geologiques et Minieres 406 900 €
Ceska Asociace Loziskovych Geologuos 0,00 €
Consiglio Nazionale Dell'Ordine DEI Geologi 0,00 €
Federation Europeenne des Geologues 329 375 €
GFZ Helmholtz-Zentrum FUR Geoforschung 1 008 975 €
Hrvatsko Geolosko Drustvo 0,00 €
Hydroisotop GmbH Laboratorium ZUR Bestimmung VON Isotopen IN Umwelt UND Hydrologie 62 500 €
Ilustre Colegio Oficial de Geologos 0,00 €
Institutt FOR Energiteknikk STI 386 344 €
Islenskar Orkurannsoknir 716 599 €
Izmir Institute OF Technology 220 250 €
Landsvirkjun 50 000 €
Maden Jeologlari Dernegi 0,00 €
Magyarhoni Foldtani Tarsulat 0,00 €
Miskolci Egyetem 236 125 €
Naturlich Insheim GmbH 25 000 €
Nederlandse Organisatie Voor Toegepast Natuurwetenschappelijk Onderzoek TNO 461 288 €
Polskie Stowarzyszenie Wyceny Zloz Kopalin 0,00 €
Slovensko Geolosko Drustvo 0,00 €
Syllogos Ellinon Geologon 0,00 €
Technische Universiteit Delft 464 375 €
Ukrainian Association OF Geologists 0,00 €
United Kingdom Research and Innovation 272 500 €
Universite DE Neuchatel 352 531 €

https://cordis.europa.eu/project/id/850626

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