Project Description

OBJECTIVES

In the last decade ASTEC progressively became the reference European severe accident (SA) integral code for water-cooled nuclear power plants (NPP) through the capitalisation of knowledge acquired in the frame of the EURATOM projects (SARNET or Severe Accident Network of Excellence) and of the OECD/NEA/CSNI R&D projects.

The CESAM FP7 project was then successfully conducted as part of the EURATOM programme in the aftermath of the Fukushima Daiichi accidents. It had two main goals: to achieve an improved understanding of all relevant phenomena during these accidents and their importance for SA Management (SAM) measures, and to simultaneously improve the ASTEC V2.1 code to simulate plant behaviour throughout accident sequences including SAM measures.

However, though a significant modelling progress could be achieved, notably for Gen II NPPs, all these efforts must be pursued for Gen II, III & III+ NPPs.

The ASCOM project aims at fostering the collaboration between all ASTEC users on the basis of in-kind contributions to be distributed over several work-packages (WPs). The main objective is to help amplify and accelerate the ongoing process of making the IRSN ASTEC code a fully reliable tool for SA analyses and accident management by strengthening the activities of this ASTEC community in a consistent way.

DESCRIPTION OF WORK

To carry out the ASCOM work programme, four separate but interlinked technical WPs are planned:

  • WP2: Improvements of ASTEC physical modelling and ASTEC overall capabilities (e.g. Gen III+ designs, spent fuel pools or SFPs…) along with an IRSN support to ASTEC users
  • WP3: Continuous validation of ASTEC V2 models vs. Separate-Effect-Tests or Integral experiments
  • WP4: ASTEC applications at reactor scale through two main lines:
    • Consolidation/update of ASTEC V2 existing generic reference input decks for PWRs, VVERs and BWRs, all of which are relating today to Gen II NPPs
    • Follow-up of comparisons at plant scale between ASTEC V2 and other reference codes on selected SA sequences for all Gen II reactor types operated in Europe today
  • WP5: Development of a few new generic NPP and SFP reference input decks to extend the ASTEC applicability to other types of nuclear installations. In addition to SFPs, main targets are on Gen III & III+ NPPs that are operated today only outside Europe or that might be built in Europe in the future, and possibly on Small Modular Reactors (SMRs).

Furthermore, two other transverse WPs (WP1 and WP6) aim at addressing the overall coordination of the project and the dissemination of the ASCOM main results (including Education and Training activities), respectively.

MAIN RESULTS

The main expected outcomes of the ASCOM in-kind project are:

  • Build-up of a joint Dynamic Validation Database (DVD) of ASTEC V2, aiming at dynamically collecting any new or improved experimental data relating to the code validation (DVD to be shared among all ASCOM members)
  • Consolidation of the existing V2.1 dataset library for generic Gen II NPPs through an intensification and a diversification of plant SA sequence simulations, while continuously improving this reference library to fit the modelling evolutions that will be integrated in ASTEC future versions (to keep generic input decks up-to-date)
  • Extension of this open generic dataset library to some Gen III & III+ NPPs, to SFPs and possibly to SMRs
  • Subsequent extension of the ASTEC V2 application scope, along with likely further improvements of the ASTEC code reliability for SA analyses and accident management as a feedback from the planned intensive use of ASTEC V2 by various partners

DURATION

1 October 2018 – 30 September 2022
4 years

PARTNERS

IRSN / CIEMAT / NUBIKI / KIT / Universita di Pisa / ENEA / IVS / EDF / Energorisk / FER / HZDR / IJS / INRNE / JRC / LEI / NRC-KI / NSC / NUS / RATEN ICN / RUB / SEC NRS / TRACTEBEL / UJV / University of Utah / VTT

CONTACT

Technical Project Leader:

Patrick Chatelard (IRSN)
Email: patrick.chatelard@irsn.fr

FOR DOWNLOAD

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 ASCOM is an in-kind project under NUGENIA/SARNET Technical Area 2 (Severe Accidents).