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dc.contributor.authorBatet Miracle, Lluís
dc.contributor.authorÁlvarez Fernández, Josep Maria
dc.contributor.authorMas de les Valls Ortiz, Elisabet
dc.contributor.authorMartínez Quiroga, Víctor Manuel
dc.contributor.authorPérez-Ferragut, Marina
dc.contributor.authorReventós Puigjaner, Francesc Josep
dc.contributor.authorSedano Miguel, Luis Ángel
dc.contributor.otherUniversitat Politècnica de Catalunya. Departament de Física i Enginyeria Nuclear
dc.date.accessioned2014-10-21T10:08:12Z
dc.date.created2014-04-01
dc.date.issued2014-04-01
dc.identifier.citationBatet, L. [et al.]. Modelling of a supercritical CO2 power cycle for nuclear fusion reactors using RELAP5-3D. "Fusion engineering and design", 01 Abril 2014, vol. 89, núm. 4, p. 354-359.
dc.identifier.issn0920-3796
dc.identifier.urihttp://hdl.handle.net/2117/24437
dc.description.abstractA supercritical recompression CO2 power cycle has been simulated using the system code RELAP5-3D. This code is being developed by INL and has traditionally been used in the simulation of operational and accidental transients in fission nuclear plants. The aim of the work presented here, developed within the framework of the Spanish Fusion Technology Program Consolider TECNO_FUS, is to take advantage of the simulation capabilities of RELAP5-3D in a field where little if any experience exists in the use of the code; i.e., the simulation of the heat fluxes and the thermodynamic cycle that, in a fusion power plant, will convert thermal power from plasma into mechanical power as a previous step to electricity generation. Code capabilities that make it suitable for this purpose are, for instance, the compressor model and the libraries of fluid properties (among them CO2 and LiPb).; The reference plant for the simulation is the one being designed under TECNO_FUS, which is the Spanish proposal for DEMO. The model of the plant includes the primary coolant systems, i.e. helium and LiPb in the Spanish dual coolant modular design (doble refrigerante modular, DRM), compressors, turbine and heat exchangers (Printed Circuit type).; After the model has been set-up, several steady-state calculations have been run to test the performance of the model. After designing some minimal control features and adjusting their parameters, a few transient calculations have been run in order to demonstrate the capabilities of code and model. Finally, strengths and weaknesses of code and model are highlighted, along with some conclusions on their suitability for fusion technology applications.
dc.format.extent6 p.
dc.language.isoeng
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Spain
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/es/
dc.subjectÀrees temàtiques de la UPC::Energies::Energia nuclear
dc.subject.lcshCarbon dioxide
dc.subject.otherDEMO
dc.subject.otherThermal-hydraulics
dc.subject.otherSupercritical carbon dioxide
dc.subject.otherPower cycle
dc.subject.otherRELAP5
dc.titleModelling of a supercritical CO2 power cycle for nuclear fusion reactors using RELAP5-3D
dc.typeArticle
dc.subject.lemacAnhídrid carbònic
dc.contributor.groupUniversitat Politècnica de Catalunya. GREENTECH - Grup de Recerca en Tecnologies Renovables
dc.contributor.groupUniversitat Politècnica de Catalunya. GREENER - Grup de recerca d'estudis energètics i de les radiacions
dc.identifier.doi10.1016/j.fusengdes.2014.03.018
dc.rights.accessRestricted access - publisher's policy
local.identifier.drac15014111
dc.description.versionPostprint (published version)
dc.date.lift10000-01-01
local.citation.authorBatet, L.; Álvarez-Fernández, J.M.; Mas De Les Valls, E.; Martínez-Quiroga, V.; Perez, M.; Reventos, F.; Sedano, L.
local.citation.publicationNameFusion engineering and design
local.citation.volume89
local.citation.number4
local.citation.startingPage354
local.citation.endingPage359


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