The ultimate response guideline simulation and analysis by using TRACE for Lungmen ABWR nuclear power plant

Author:

Lin H.-T.1,Yang S.-M.2,Wang J.-R.2,Chen S.-W.2,Shih C.2

Affiliation:

1. Institute of Nuclear Energy Research , Atomic Energy Council, Executive Yuan, 1000 Wenhua Rd. Jiaan Village, Longtan District, Taoyuan City 32546, Taiwan (R.O.C) , E-mail:

2. Institute of Nuclear Engineering and Science , National Tsing Hua University, No. 101, Section 2, Kuang Fu Rd., HsinChu 30013 , Taiwan (R.O.C.)

Abstract

Abstract In this research, the TRACE/SNAP model of Lungmen ABWR nuclear power plant (NPP) has been established for the simulation and analysis of ultimate response guideline (URG). The main actions of URG are depressurization and low pressure water injection of reactor and containment venting. This research focuses to assess the URG utility of Lungmen NPP under Fukushima-like conditions. This study consists of three steps. The first step is the establishment of Lungmen NPP TRACE/SNAP model. In order to evaluate the system response of TRACE/SNAP model, FSAR data (MSIV closure and loss of feedwater flow transient) were used to compare with the results of TRACE. The second step is the URG simulation and analysis under Fukushima-like conditions by using Lungmen NPP TRACE/SNAP model. In this step, the no URG case was also performed in order to evaluate the URG effectiveness of Lungmen NPP. In order to confirm the mechanical property and integrity of fuel rods, the final step is FRAPTRAN analysis. According to TRACE analysis results, the URG can keep the peak cladding temperature (PCT) below the criteria 1 088.7 K under Fukushima-like conditions which indicates that Lungmen NPP can be controlled in a safe situation. Nevertheless, if Lungmen NPP does not perform the URG under Fukushima-like conditions, the water level may drop lower than TAF after 1 100 s which means a safety issue about the fuel rods may be generated. The analysis results of FRAPTRAN also indicate the integrity of fuel rods cannot be kept under the above conditions.

Publisher

Walter de Gruyter GmbH

Subject

Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics,Radiation

Reference27 articles.

1. The ultimate emergency measures to secure a NPP under an accidental condition with no designed power or water supply;Nuclear Engineering and Design,2012

2. Human performance evaluation: The procedures of ultimate response guideline for nuclear power plants;Nuclear Engineering and Design,2012

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