Published May 2020 | Version v1
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CAP1400 IVR Related Design Features and Analysis Methodology

  • 1. Shanghai Nuclear Engineering Research & Design Institute (China)

Description

Conclusion: • IVR strategy is used to contain the core debris because it is highly compatiblewith CAP1400 design features. • Some uncertainties, such as complex physico-chemical phenomena still exist. However, the design features and measures taken for CAP1400 to prevent large heat flux to RPV make IVR strategy robust. • IVR efficiency is demonstrated by decomposition event tree supported bydetailed analyses. • IVR concept is extended as retaining the molten debris in the RPV byexternally cooling water in the cavity and/or in-vessel injection.

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Part of:
In-vessel Melt Retention and Ex-vessel Corium Cooling. Summary of a Technical Meeting. Supplementary Files

Additional details

Publishing Information

ISBN
978-92-0-106320-5
Imprint Title
In-vessel Melt Retention and Ex-vessel Corium Cooling. Summary of a Technical Meeting. Supplementary Files
Imprint Pagination
vp.
Journal Page Range
35 p.
ISSN
1011-4289
Report number
IAEA-TECDOC--1906(SUPPLEMENTARY FILES)

Conference

Title
Technical Meeting on Phenomenology and Technologies Relevant to In-Vessel Melt Retention and Ex-Vessel Corium Cooling
Dates
17-21 Oct 2016
Place
Shanghai (China)

INIS

Country of Publication
International Atomic Energy Agency (IAEA)
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
51089934
Subject category
S21: SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
COOLING; DESIGN; EFFICIENCY; HEAT FLUX; IN-VESSEL RETENTION; WATER
Descriptors DEC
HYDROGEN COMPOUNDS; OXYGEN COMPOUNDS

Optional Information