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sCO2-4-NPP SIGNED

INNOVATIVE SCO2-BASED HEAT REMOVAL TECHNOLOGY FOR AN INCREASED LEVEL OF SAFETY OF NUCLEAR POWER PLANTS

Total Cost €

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EC-Contrib. €

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Partnership

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Project "sCO2-4-NPP" data sheet

The following table provides information about the project.

Coordinator
ELECTRICITE DE FRANCE 

Organization address
address: AVENUE DE WAGRAM 22
city: PARIS 08
postcode: 75008
website: www.edf.fr

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country France [FR]
 Total cost 2˙786˙971 €
 EC max contribution 2˙352˙452 € (84%)
 Programme 1. H2020-Euratom-1.7. (Promote innovation and industry competitiveness)
2. H2020-Euratom-1.1. (Support safe operation of nuclear systems)
 Code Call NFRP-2018
 Funding Scheme IA
 Starting year 2019
 Duration (year-month-day) from 2019-09-01   to  2022-08-31

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    ELECTRICITE DE FRANCE FR (PARIS 08) coordinator 336˙489.00
2    UNIVERSITAET DUISBURG-ESSEN DE (ESSEN) participant 537˙511.00
3    UNIVERSITAET STUTTGART DE (STUTTGART) participant 368˙125.00
4    CENTRUM VYZKUMU REZ SRO CZ (HUSINEC-REZ) participant 271˙375.00
5    FIVES CRYO FR (GOLBEY CEDEX) participant 169˙750.00
6    INSTITUT JOZEF STEFAN SI (LJUBLJANA) participant 161˙562.00
7    ARTTIC FR (PARIS) participant 139˙914.00
8    GFS GESELLSCHAFT FUR SIMULATORSCHULUNG MBH DE (ESSEN) participant 124˙332.00
9    KSG KRAFTWERKS-SIMULATOR-GESELLSCHAFT MBH DE (ESSEN) participant 124˙042.00
10    UJV REZ, a. s. CZ (HUSINEC) participant 86˙625.00
11    NUOVO PIGNONE TECNOLOGIE SRL IT (FIRENZE) participant 32˙725.00

Map

 Project objective

The main aim of the sCO2-4-NPP is to bring an innovative technology based on supercritical CO2 (sCO2) for heat removal in nuclear power plants (NPPs) closer to the market. sCO2-4-NPP builds on results of the previous H2020 sCO2-HeRo project, where the technology was first developed and brought to TRL3. The sCO2-4-NPP technology will be a backup cooling system, attached to the principal steam-based cooling system, which will considerably delay or eliminate the need for human intervention (>72 hours) in case of accidents such as StationBlackOuts, thus replying to the need for increased safety in NPPs. Thanks to the compact size and modularity of the system, it can be retrofitted into existing NPPs but also included in future NPPs under development. Through a close collaboration between major industrial actors and highly-skilled academic institutions, the sCO2-4-NPP partners will bring the full system to TRL5 and parts of it to TRL7 by carrying out experiments, simulations, design, upscaling and validation of the technology in a real NPP PWR simulator. Regulatory requirements will be considered in the conceptual design of components and the system architecture to increase the chances of acceptance by European nuclear safety authorities and speed up the road to the market. Detailed technical, regulatory, financial and marketing roadmaps will be developed for bringing the technology to industrial use (TRL 9) after the project. The sCO2-4-NPP technology will increase NPP safety, decrease the plant overall environmental footprint and potentially lower costs for energy consumption, thus increasing the competitiveness of European NPP operators.

 Deliverables

List of deliverables.
Report on the definition of initial and boundary conditions for the SBO accident Documents, reports 2020-03-06 13:50:03
Project public website Documents, reports 2020-03-06 13:50:03

Take a look to the deliverables list in detail:  detailed list of sCO2-4-NPP deliverables.

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The information about "SCO2-4-NPP" are provided by the European Opendata Portal: CORDIS opendata.

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