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Accident Management before and after
Fukushima
Dr. Christoph Pistner
23.10.2015
2
www.oeko.de
Nuclear Regulatory Framework in Germany
Quelle: CNS 2008Accident Management│C. Pistner│Tokyo│23.10.2015
3
www.oeko.de
Developement of Defence in Depth
Quelle: WENRA 2009Accident Management│C. Pistner│Tokyo│23.10.2015
4
www.oeko.de
Developement of Defence in Depth
Quelle: WENRA 2009Accident Management│C. Pistner│Tokyo│23.10.2015
5
www.oeko.de
Regulatory requirements for backfittings
• In principal: protection against damages as required according
to the state of the art in science and technology à continuous
improvements
• Since 1990s: periodic re-assessment of safety (since 2002
required by Atomic Law)
• In 2010: New paragraph §7d:
„…die Sicherheitsvorkehrungen verwirklicht werden, die
jeweils entwickelt, geeignet und angemessen sind, um
zusätzlich … einen nicht nur geringfügigen Beitrag zur
weiteren Vorsorge gegen Risiken für die Allgemeinheit zu
leisten
Accident Management│C. Pistner│Tokyo│23.10.2015
6
www.oeko.de
Implementation of accident management measures
before Fukushima
• Emergency manual
• Assured containment isolation
• Filtered containment venting
• Supply-air filtering for the control room
• Emergency power supply from neighboring plant (if
applicable)
• Increased capacity of batteries
• Restoration of off-site power supply
• Additional off-site power supply (underground cable)
• Sampling system in the containment
Accident Management│C. Pistner│Tokyo│23.10.2015
7
www.oeko.de
Implementation of accident management measures
before Fukushima (BWR)
• Independant injection system (in new, robust building, with
independent power supply and I&C)
• Additional injection and refilling of the RPV
• Diverse pressure limitation for RPV
• Containment inertisation
Accident Management│C. Pistner│Tokyo│23.10.2015
8
www.oeko.de
Implementation of accident management measures
before Fukushima (PWR)
• Secondary-side bleed and feed
• Primary-side bleed and feed
• Catalytic recombiners to limit hydrogen formation (based on
severe accident scenarios)
Accident Management│C. Pistner│Tokyo│23.10.2015
9
www.oeko.de
Reactions to Fukushima
Accident Management│C. Pistner│Tokyo│23.10.2015
● Plant-specific safety review of the reactor safety commission (RSK)
● Expert commissions of states (like in Baden-Württemberg, Bayern)
● Change of the Atomic Law
‒ Shut-down of 8 plants
‒ Limitation of lifetimes of remaining plants up to 2022
● Information Notice (WLN) of GRS
● Recommendations of RSK
● EU-Stresstest and National Action Plans
10
www.oeko.de
Recommendations of RSK
Accident Management│C. Pistner│Tokyo│23.10.2015
● May 2011: Plant-specific safety review (RSK-SÜ) of German nuclear
power plants in the light of the events in Fukushima-1 (Japan)
● April 2012: Loss of the primary ultimate heat sink
● September 2012: Recommendations of the RSK on the robustness of
the German nuclear power plants
● April 2013: Minimum value of 0.1g (approx. 1.0 m/s²) for the
maximum horizontal ground acceleration in earthquakes
● November 2013: Assessment of the coverage of extreme weather
conditions by the existing design
● April 2015: Hydrogen Release from the Containment
11
www.oeko.de
National action plan for Germany
● Ensuring DC (up to 10 hours) and AC (after a maximum of 10 hours)
‒ Installation of additional emergency power generators and at least
two physically separated connection points
● Independant service water supply (independent of the circulating
water intake available by design)
● Additional pump with two physically sufficiently separated connection
points at different redundancies of protected component cooling
system
● Ensuring filtered venting assuming SBO and loss of DC,
unfavourable radiological conditions, excluding hydrogen
accumulation outside containment, also repeatedly and after natural
external design basis hazards
Accident Management│C. Pistner│Tokyo│23.10.2015
12
www.oeko.de
National action plan for Germany
● For BWR: Installation of passive catalytic recombiners at spent fuel
pools outside containment
● For PWR: reactor pressure vessel injection with borated water
independent of the active emergency cooling system
● Additional permanently installed systems for spent fuel pool cooling
● Implementation of the Severe Accident Management Guidelines
(SAMG)
● To ensure the vital safety functions in case of beyond design basis
external or internal hazards, a systematic analysis should be
conducted
‒ For example: Robustness against earthquakes of one level of intensity
higher than design basis values by use of earthquake PSA or by means of
applicability considerations
Accident Management│C. Pistner│Tokyo│23.10.2015
13
www.oeko.de
Developement of Defence in Depth
Quelle: WENRA 2009Accident Management│C. Pistner│Tokyo│23.10.2015

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Accident Management before and after Fukushima

  • 1. www.oeko.de Accident Management before and after Fukushima Dr. Christoph Pistner 23.10.2015
  • 2. 2 www.oeko.de Nuclear Regulatory Framework in Germany Quelle: CNS 2008Accident Management│C. Pistner│Tokyo│23.10.2015
  • 3. 3 www.oeko.de Developement of Defence in Depth Quelle: WENRA 2009Accident Management│C. Pistner│Tokyo│23.10.2015
  • 4. 4 www.oeko.de Developement of Defence in Depth Quelle: WENRA 2009Accident Management│C. Pistner│Tokyo│23.10.2015
  • 5. 5 www.oeko.de Regulatory requirements for backfittings • In principal: protection against damages as required according to the state of the art in science and technology à continuous improvements • Since 1990s: periodic re-assessment of safety (since 2002 required by Atomic Law) • In 2010: New paragraph §7d: „…die Sicherheitsvorkehrungen verwirklicht werden, die jeweils entwickelt, geeignet und angemessen sind, um zusätzlich … einen nicht nur geringfügigen Beitrag zur weiteren Vorsorge gegen Risiken für die Allgemeinheit zu leisten Accident Management│C. Pistner│Tokyo│23.10.2015
  • 6. 6 www.oeko.de Implementation of accident management measures before Fukushima • Emergency manual • Assured containment isolation • Filtered containment venting • Supply-air filtering for the control room • Emergency power supply from neighboring plant (if applicable) • Increased capacity of batteries • Restoration of off-site power supply • Additional off-site power supply (underground cable) • Sampling system in the containment Accident Management│C. Pistner│Tokyo│23.10.2015
  • 7. 7 www.oeko.de Implementation of accident management measures before Fukushima (BWR) • Independant injection system (in new, robust building, with independent power supply and I&C) • Additional injection and refilling of the RPV • Diverse pressure limitation for RPV • Containment inertisation Accident Management│C. Pistner│Tokyo│23.10.2015
  • 8. 8 www.oeko.de Implementation of accident management measures before Fukushima (PWR) • Secondary-side bleed and feed • Primary-side bleed and feed • Catalytic recombiners to limit hydrogen formation (based on severe accident scenarios) Accident Management│C. Pistner│Tokyo│23.10.2015
  • 9. 9 www.oeko.de Reactions to Fukushima Accident Management│C. Pistner│Tokyo│23.10.2015 ● Plant-specific safety review of the reactor safety commission (RSK) ● Expert commissions of states (like in Baden-Württemberg, Bayern) ● Change of the Atomic Law ‒ Shut-down of 8 plants ‒ Limitation of lifetimes of remaining plants up to 2022 ● Information Notice (WLN) of GRS ● Recommendations of RSK ● EU-Stresstest and National Action Plans
  • 10. 10 www.oeko.de Recommendations of RSK Accident Management│C. Pistner│Tokyo│23.10.2015 ● May 2011: Plant-specific safety review (RSK-SÜ) of German nuclear power plants in the light of the events in Fukushima-1 (Japan) ● April 2012: Loss of the primary ultimate heat sink ● September 2012: Recommendations of the RSK on the robustness of the German nuclear power plants ● April 2013: Minimum value of 0.1g (approx. 1.0 m/s²) for the maximum horizontal ground acceleration in earthquakes ● November 2013: Assessment of the coverage of extreme weather conditions by the existing design ● April 2015: Hydrogen Release from the Containment
  • 11. 11 www.oeko.de National action plan for Germany ● Ensuring DC (up to 10 hours) and AC (after a maximum of 10 hours) ‒ Installation of additional emergency power generators and at least two physically separated connection points ● Independant service water supply (independent of the circulating water intake available by design) ● Additional pump with two physically sufficiently separated connection points at different redundancies of protected component cooling system ● Ensuring filtered venting assuming SBO and loss of DC, unfavourable radiological conditions, excluding hydrogen accumulation outside containment, also repeatedly and after natural external design basis hazards Accident Management│C. Pistner│Tokyo│23.10.2015
  • 12. 12 www.oeko.de National action plan for Germany ● For BWR: Installation of passive catalytic recombiners at spent fuel pools outside containment ● For PWR: reactor pressure vessel injection with borated water independent of the active emergency cooling system ● Additional permanently installed systems for spent fuel pool cooling ● Implementation of the Severe Accident Management Guidelines (SAMG) ● To ensure the vital safety functions in case of beyond design basis external or internal hazards, a systematic analysis should be conducted ‒ For example: Robustness against earthquakes of one level of intensity higher than design basis values by use of earthquake PSA or by means of applicability considerations Accident Management│C. Pistner│Tokyo│23.10.2015
  • 13. 13 www.oeko.de Developement of Defence in Depth Quelle: WENRA 2009Accident Management│C. Pistner│Tokyo│23.10.2015