Published August 2004 | Version v1
Report Open

Primary coolant pipe rupture event in liquid metal cooled reactors. Proceedings of a technical meeting

Description

In liquid-metal cooled fast reactors (LMFR) the primary coolant pipes (PCP) connect the primary coolant pumps to the grid plate. A rupture in one of these pipes could cause significant loss of coolant flow to the core with severe consequences. In loop type reactors, all primary pipelines are provided with double envelopes and inter-space coolant leak monitoring systems that permit leak detection before break. Thus, the PCP rupture event can be placed in the beyond design basis event (BDBE) category. Such an arrangement is difficult to incorporate for pool type reactors, and hence it could be argued that the PCP rupture event needs to be analysed in detail as a design basis event (DBE, category 4 event). However, the primary coolant pipes are made of ductile austenitic stainless steel material and operate at temperatures of the cold pool and at comparatively low pressures. For such low stressed piping with negligible creep and embrittlement effects, it is of interest to discuss under what design provisions, for pool type reactors, the guillotine rupture of PCP could be placed in the BDBE category. The topical Technical Meeting (TM) on Primary Coolant Pipe Rupture Event in Liquid Metal Cooled Reactors (Indira Gandhi Centre for Atomic Research, Kalpakkam, India, 13-17 January 2003) was called to enable the specialists to present the philosophy and analyses applied on this topic in the various Member States for different LMFRs. The scope of the technical meeting was to provide a global forum for information exchange on the philosophy applied in the various participating Member States and the analyses performed for different LMFRs with regard to the primary coolant pipe rupture event. More specifically, the objectives of the technical meeting were to review the safety philosophy for the PCP rupture event in pool type LMFR, to assess the structural reliability of the PCP and the probability of rupture under different conditions (with/without in-service inspection), to review the classification of the PCP rupture event in DBE/BDBE categories and discuss the applicable design safety limits, to assess the need for consequency analysis, like pipe whip effects, primary pump seizure and multiple pipe rupture, and, last but not least, to present the results of analyses of the event per se for flows and/or temperatures and improved design concepts for minimizing the consequences to the core. A brief overview of the respective national fast reactor programmes was given by the representatives of the participating Member States, before addressing the specific objectives of the TM. This publication contains ten papers covering the following four main topics: safety philosophy, structural integrity assessment, thermal hydraulics, and new concepts. The discussions that evolved around the major technical issues addressed in the meeting are summarized

Availability note (English)

Available from INIS in electronic form; Also available on-line: http://www-pub.iaea.org/MTCD/publications/PDF/te_1406_web.pdf; For availability on CD-ROM, please contact IAEA, Sales and Promotion Unit, E-mail: sales.publications@iaea.org; Web site: http://www-pub.iaea.org/MTCD/publications.asp

Files

36030761.pdf

Files (3.9 MB)

Name Size Download all
md5:ee68cd228dfce9695dc7c58e95d11977
3.9 MB Preview Download

Additional details

Publishing Information

ISBN
92-0-109104-4
Imprint Pagination
158 p.
ISSN
1011-4289
Report number
IAEA-TECDOC--1406

Conference

Title
Technical meeting on primary coolant pipe rupture event in liquid metal cooled reactors
Dates
13-17 Jan 2003
Place
Kalpakkam (India)

Optional Information

Notes
Refs, figs, tabs