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Technical Paper

Experiments on a Water Pool-Type Reactor Cavity Cooling System in a High-Temperature Gas-Cooled Reactor

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Pages 39-58 | Published online: 10 Apr 2017

References

  • M. OGAWA and T. NISHIHARA, “Present Status of Energy in Japan and HTTR Project,” Nucl. Eng. Des.,233, 1-3, 5 (2004).
  • “Heat Transport and Afterheat Removal for Gas Cooled Reactors Under Accident Conditions,” IAEA-TECDOC-1163, International Atomic Energy Agency (2000).
  • “Current Status and Future Development of Modular High Temperature Gas Cooled Reactor Technology,” IAEA-TECDOC-1198, International Atomic Energy Agency (2001).
  • S. SAITO et al., “Design and Safety Consideration in the High-Temperature Engineering Test Reactor (HTTR),” IAEA-TC-389, International Atomic Energy Agency (1989).
  • Z. WU et al., “The Design Features of the HTR-10,” Nucl. Eng. Des., 218, 25 (2002).
  • D. A. DILLING et al., “Passive Decay and Residual Heat Removal in the MHTGR,” IAEA-TECDOC-757, International Atomic Energy Agency (1982).
  • J. J. JEONG et al., “Development of a Multi-Dimensional Thermal-Hydraulic System Code, MARS 1.3.1,” Ann. Nucl. Energy, 26, 1611 (1999).
  • Y. J. CHUNG et al., “Two Phase Natural Circulation and the Heat Transfer in the Passive Residual Heat Removal System of an Integral Type Reactor,” Ann. Nucl. Energy, 33, 262 (2006).
  • W.-J. LEE et al., “Development of MARS-GCR/V1 for Thermal-Hydraulic Safety Analysis of Gas-Cooled Reactor Systems,” Nucl. Eng. Technol., 37, 587 (2005).
  • G. C. PARK et al., “Assessment of a New Design for a Reactor Cavity Cooling System in a Very High Temperature Gas-Cooled Reactor,” Nucl. Eng. Technol., 39, 45 (2006).
  • S. W. CHURCHILL, “Free Convection in Layers and Enclosures,” Heat Exchanger Design Handbook, Sec. 2.5.8 (1984).
  • T. FUJII and H. IMURA, “Natural Convection from a Plate with Arbitrary Inclination,” Int. J. Heat Mass Transfer, 15, 755 (1972).
  • L.-J. GUO et al., “Transient Convective Heat Transfer of Steam-Water Two-Phase Flow in a Helical Tube Under Pressure Drop Type Oscillations,” Int. J. Heat Mass Transfer, 45, 533 (2002).
  • W. H. McADAMS, Heat Transmission, 3rd ed., McGraw-Hill, New York (1954).
  • N. ZUBER, “On the Stability of Boiling Heat Transfer,” Tran. ASME, 80, 711 (1958).
  • NEVADA Software Package Reference Manual, TAC Technologies.
  • B. J. YUN et al., “Measurement of the Two-Phase Mass Flow Rate Using an Average Bidirectional Flow Tube,” Proc. Two-Phase Flow Modeling and Experimentation, Pisa, Italy, September 2004.

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