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The EPR Resistance to Extreme Hazards

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The EPR Resistance to Extreme Hazards

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    1. The EPR™ Resistance to Extreme Hazards

    2. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.2 EPR™ safety approach

    3. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.3 EPR™ Safety Resistance to major hazards Robustness of cooling capability Prevention of environmental damage

    4. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.4 Structural resistance

    5. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.5 EPR™ Safety Resistance to major hazards Robustness of cooling capability Prevention of environmental damage

    6. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.6 The EPR is licensed to resist to a 0.25g-0.3g peak ground acceleration Seismic Margin Assessments performed for safety authorities in the UK and US show that even a 0.6g peak ground acceleration earthquake would not have significantly impacted the EPR capabilities to mitigate the risk of severe accident No cliff-edge effect illustration: Earthquake beyond worst case scenario

    7. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.7 Robustness of cooling systems

    8. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.8 Robustness of cooling capability Water supply

    9. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.9 Robustness of cooling capability Emergency power

    10. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.10 Robustness of cooling capability The core can be cooled using only one diesel generator, one safety train and without external heat sink

    11. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.11 Reactor fuel pool robustness

    12. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.12 Robustness Provide grace period to mobilize emergency means

    13. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.13 EPR™ Safety Resistance to major hazards Robustness of cooling capability Prevention of environmental damage

    14. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.14 Prevention of environmental damage Aprčs arręt automatique des réacteurs, alimentation électrique assurée par le réseau Alimentation par le réseau extérieur rendu indisponible du fait des dégâts causés par le séisme Relais automatique pris par les diesels de secours Au bout d’une heure, diesels de secours rendus indisponible du fait des dégâts causés par le tsunami Délai de plusieurs jours avant de pouvoir connecter les générateurs mobiles d’urgence apportés sur le site Aprčs arręt automatique des réacteurs, alimentation électrique assurée par le réseau Alimentation par le réseau extérieur rendu indisponible du fait des dégâts causés par le séisme Relais automatique pris par les diesels de secours Au bout d’une heure, diesels de secours rendus indisponible du fait des dégâts causés par le tsunami Délai de plusieurs jours avant de pouvoir connecter les générateurs mobiles d’urgence apportés sur le site

    15. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.15 Prevention of environmental damage No high pressure core melt

    16. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.16 Prevention of environmental damage No H2 explosion

    17. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.17 Prevention of environmental damage No steam explosion

    18. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.18 Prevention of environmental damage Long-term core melt stabilization

    19. INE 2011 The EPR™ Resistance to Extreme Hazards – September 29th, 2011 p.19 Wrap-up

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