European Companies Search Engine

EU funding (€3,186,503): MANAGEMENT AND UNCERTAINTIES OF SEVERE ACCIDENTS Hor 30 May 2019 EU Research and Innovation programme "Horizon"

Overview

Text

MANAGEMENT AND UNCERTAINTIES OF SEVERE ACCIDENTS

In the current state of maturity of severe accident codes in terms of phenomena addressed and extensive validation conducted, the time has come to foster BEPU,Best Estimate Plus Uncertainties, application in the severe accident (SA) domain, and accident management (AM). The advantages with respect to deterministic analysis are known: avoid adopting conservative assumptions in the model and allow identifying safety margins, quantify likelihood of reaching specific values and, through the distribution variance provide insights into dominating uncertain parameters.The overall objective of the Management and Uncertainties of Severe Accident (MUSA) project is to assess the capability of SA codes when modelling reactor and SFP (Spent Fuel Pool) accident scenarios of Gen II and III. To do so UQ (Uncertainty Quantification) methods are to be used, with emphasis on the effect of already-set and innovative accident management measures on accident unfolding, particularly those related to ST (Source Term) mitigation. Therefore, ST related Figures Of Merit (FOM) are to be used in the UQ application. The MUSA project proposes an innovative research agenda in order to move forward the predictive capability of SA analysis codes by combining them with the best available/improved UQ tools and embedding accident management as an intrinsic aspect of SA analyses.MUSA develops through key activities which also describe the main outcomes foreseen from the project: identification and quantification of uncertainty sources in SA analyses; review and adaptation of UQ methods; and testing such methods against reactor and SFP accident analyses, including AM. Given the focus of FOM on source term, the project will identify variables governing ST uncertainties that would be worth investigating further. All the ingredients necessary to conduct the project are already available: analytical tools, experimental data, postulated reactor and SFP scenarios and, technical and scientific competences.


Funded Companies:

Company name Funding amount
Agenzia Nazionale Per LE Nuove Tecnologie, L'Energia E LO Sviluppo Economico Sostenibile €176,863
Amentum Clean Energy Ltd. €0.00
BEL V €110,200
Canadian Nuclear Safety Commission €0.00
Centro de Investigaciones Energeticas Medioambientales y Tecnologicas €286,605
China Nuclear Power Technology Research Institute Co. Ltd. €0.00
Commissariat a L Energie Atomique et aux Energies Alternatives €104,621
Electric Power Research Institute Inc. €0.00
Energy Software SL €0.00
Framatome GmbH €72,700
Gesellschaft FUR Anlagen UND Reaktorsicherheit (GRS) gGmbH €275,841
Institut de Radioprotection et de Surete Nucleaire €384,800
Institute OF Nuclear Research And Nuclear Energy - Bulgarian Academy OF Sciences €86,675
Japan Atomic Energy Agency €0.00
JRC -Joint Research Centre- European Commission €104,725
Karlsruher Institut Fuer Technologie €225,050
Korea Atomic Energy Research Institute €0.00
LGI Sustainable Innovation €203,200
Lietuvos Energetikos Institutas €84,800
LLC Energorisk €85,363
Nine Nuclear AND Industrial Engineering Srl €9,200.00
Paul Scherrer Institut €267,280
State Enterprise State Scientific And Technical Center For Nuclear And Radiation Safety €56,066
Technical University OF Sofia €111,050
Teknologian Tutkimuskeskus VTT Oy €85,800
Tractebel Engineering SA €112,300
U.S. Nuclear Regulatory Commission €0.00
Universita Degli Studi Di Roma LA Sapienza €90,603
Universita Di Pisa €248,163
Vytauto Didziojo Universitetas €4,600.00

Source: https://cordis.europa.eu/project/id/847441

The filing refers to a past date, and does not necessarily reflect the current state.