Search results for "EFIT reactor"

showing 4 items of 4 documents

Analysis of Protected Accidental Transients in the EFIT Reactor With the RELAP5 Thermal-Hydraulic Code

2008

The European Facility for Industrial Transmutation (EFIT) is aimed at demonstrating the feasibility of transmutation process through the Accelerator Driven System (ADS) route on an industrial scale. The conceptual design of this reactor of about 400 MW thermal power is under development in the frame of the European EUROTRANS Integrated Project of the EURATOM Sixth Framework Program (FP6). EFIT is a pool-type reactor cooled by forced circulation of lead in the primary system where the heat is removed by steam generators installed inside the reactor vessel. The reactor power is sustained by a spallation neutron source supplied by a proton beam impinging on a lead target at the core centre. A …

EFIT reactor RELAP5 thermal-hydraulic code protected accidental transientsEngineeringNuclear transmutationWaste managementbusiness.industryNuclear engineeringThermal power stationHeat sinkThermal hydraulicsNatural circulationDecay heatbusinessReactor pressure vesselSettore ING-IND/19 - Impianti NucleariThermal energyVolume 3: Thermal Hydraulics; Instrumentation and Controls
researchProduct

Thermalhydraulic analyses of overpower transients in the EFIT reactor

2008

EFIT REACTORSAFETY ANALYSES RELAP5 CODE
researchProduct

Decay Heat Removal and Transient Analysis in Accidental Conditions in the EFIT Reactor

2008

The development of a conceptual design of an industrial-scale transmutation facility (EFIT) of several 100 MW thermal power based on accelerator-driven system (ADS) is addressed in the frame of the European EUROTRANS Integral Project. In normal operation, the core power of EFIT reactor is removed through steam generators by four secondary loops fed by water. A safety-related decay heat removal (DHR) system provided with four independent inherently safe loops is installed in the primary vessel to remove the decay heat by natural convection circulation under accidental conditions which are caused by a loss-of-heat sink (LOHS). In order to confirm the adequacy of the adopted solution for decay…

EngineeringNatural convectionNuclear transmutationArticle Subjectbusiness.industryNuclear engineeringMechanical engineeringThermal power stationTransient analysisNatural circulationNuclear Energy and EngineeringConceptual designlcsh:Electrical engineering. Electronics. Nuclear engineeringDecay heatADS EFIT Reactor Transient Analysis SIMMER-III codebusinessReactor pressure vessellcsh:TK1-9971Settore ING-IND/19 - Impianti Nucleari
researchProduct

Flowblockage failures in the EFIT reactor

2011

Flowblockage EFIT reactorSettore ING-IND/19 - Impianti Nucleari
researchProduct