Title of article
Safety system consideration of a supercritical-water cooled fast reactor with simplified PSA
Author/Authors
Lee، نويسنده , , J.H and Oka، نويسنده , , Y and Koshizuka، نويسنده , , S، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 1999
Pages
12
From page
327
To page
338
Abstract
The probabilistic safety of the supercritical-water cooled fast reactor (SCFR) is evaluated with the simplified probabilistic safety assessment (PSA) methodology. SCFR has a once-through direct cycle where all feedwater flows through the core to the turbine at supercritical pressure. There are no recirculation loops in the once-through direct cycle system, which is the most important difference from the current light water reactor (LWR). The main objective of the present study is to assess the effect of this difference on the safety in the stage of conceptual design study. A safety system configuration similar to the advanced boiling water reactor (ABWR) is employed. At loss of flow events, no natural recirculation occurs. Thus, emergency core flow should be quickly supplied before the completion of the feedwater pump coastdown at a loss of flow accident. The motor-driven high pressure coolant injection (MD-HPCI) system cannot be used for the quick core cooling due to the delay of the emergency diesel generator (D/G) start-up. Accordingly, an MD-HPCI system in an ABWR is substituted by a turbine-driven (TD-) HPCI system for the SCFR. The calculated core damage frequency (CDF) is a little higher than that of the Japanese ABWR and a little lower than that of the Japanese BWR when Japanese data are employed for initiating event frequencies. Four alternatives to the safety system configurations are also examined as a sensitivity analysis. This shows that the balance of the safety systems designed here is adequate. Consequently, though the SCFR has a once-through coolant system, the CDF is not high due to the diversity of feedwater systems as the direct cycle characteristics.
Keywords
Core damage frequency , Supercritical-water cooled reactor , Probabilistic safety assessment , Safety System
Journal title
Reliability Engineering and System Safety
Serial Year
1999
Journal title
Reliability Engineering and System Safety
Record number
1570761
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