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생산기술

Modification of the pool-wall pipe support for the Fuel Test Loop in HANARO

원문정보

J. M. LEE, C. Y. LEE, S. K. PARK, S. H. AHN

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초록

영어

The fuel test loop consisted an in-pile test section (IPS) and an out-pile system (OPS) is an nuclear fuel irradiation test facility installed in HANARO and its operating temperature and pressure are similar to those of commercial nuclear power plant’s. Penetration pipe connecting the IPS and OPS at the reactor concrete wall is supported by pool-wall pipe support. The existing pool-wall pipe support established in the HANARO have insulations even thought the leak tightness is not ensured. So, the need for an isolation of the insulations from the HANARO cooling water makes the existing pool-wall pipe support newly designed. In this study a structural evaluation for the pool-wall pipe support in accordance with the 2001 ASME B&PV Section III NF is implemented. The most critical primary and secondary stress intensities occur at
the modified connection area of the main cooling water pipe and plate ring, but those values are less than the allowable stress. It is concluded that the existing pool-wall pipe support could be modified to a newly designed shape having an isolated insulation from a HANARO cooling water.

목차

Abstract
 1. 서론
 2. Model description
  2.1 Model
  2.2 Material
  2.3 Loads
 3. Applicable Code
  3.1 Stress limits for a class 1 support
  3.2 Special stress limits
  3.3. Design of a bolting
 4. Stress Analysis Results
  4.1 Design conditions & service level A
  4.2 Service level B
  4.3 Service level C
  4.4 Service level D(SSE)
  4.5 Service level D(Pipe-break)
  4.6 Stress analysis of flange screws
 5. Conclusion
 REFERENCES

저자정보

  • J. M. LEE Research Reactor Engineering Division, Korea Atomic Energy Research Institute
  • C. Y. LEE Research Reactor Engineering Division, Korea Atomic Energy Research Institute
  • S. K. PARK Research Reactor Engineering Division, Korea Atomic Energy Research Institute
  • S. H. AHN Research Reactor Engineering Division, Korea Atomic Energy Research Institute

참고문헌

자료제공 : 네이버학술정보

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