Title of article
Mitigation Measures Following a Loss-of-Residual-Heat-Removal Event During Shutdown
Author/Authors
Seul، Kwang Won نويسنده , , Bang، Young Seok نويسنده , , Kim، Hho Jung نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2000
Pages
-151
From page
152
To page
0
Abstract
The transient following a loss-of-residual-heat-removal event during shutdown was analyzed to determine the containment closure time (CCT) to prevent uncontrolled release of fission products and the gravityinjection path and rate (GIPR) for effective core cooling using the RELAP5/MOD3.2 code. The plant conditions of Yonggwang Units 3 and 4, a pressurized water reactor (PWR) of 2815-MW(thermal) power in Korea, were reviewed, and possible event sequences were identified. From the CCT analysis for the five cases of typical plant configurations, it was estimated for the earliest CCT to be 40 min after the event in a case with a large cold-leg opening and emptied steam generators (SGs). However, the case with water-filled SGs significantly delayed the CCT through the heat removal to the secondary side. From the GIPR analysis for the six possible gravity-injection paths from the refueling water storage tank (RWST), the case with the injection point and opening on the other leg side was estimated to be the most suitable path to avoid core boiling. In addition, from the sensitivity study, it was evaluated for the plant to be capable of providing the core cooling for the long-term transient if nominal RWST water is available. As a result, these analysis methods and results will provide useful information in understanding the plant behavior and preparing the mitigation measures after the event, especially for Combustion Engineeringtype PWR plants. However, to directly apply the analysis results to the emergency procedure for such an event, additional case studies are needed for a wide range of operating conditions such as reactor coolant inventory, RWST water temperature, and core decay heat rate.
Keywords
faculty development , scholarship reconsidered , interdisciplinarity
Journal title
NUCLEAR TECHNOLOGY
Serial Year
2000
Journal title
NUCLEAR TECHNOLOGY
Record number
29659
Link To Document