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Technical Note

Experimental Investigation of Coupled Natural Circulation Loops

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Pages 399-403 | Published online: 10 May 2017

References

  • Decay Heat Removal and Natural Convection in Fast Breeder Reactors, A. K. AGRAWAL and J. G. GUPPY, Eds., Hemisphere Publishing Corp., Washington, D.C. (1981).
  • R. J. RIBANDO, “Comparison of Numerical Results with Experimental Data for Single-Phase Natural Convection in an Experimental Sodium Loop”, Decay Heat Removal and Natural Convection in Fast Breeder Reactors, p. 9, A. K. AGRAWAL and J. G. GUPPY, Eds., Hemisphere Publishing Corp., Washington, D.C. (1981).
  • M. KHATIB-RAHBAR, I. K. MADNI, and A. K. AGRAWAL, “Impact of Thermal Buoyancy in LMFBR Piping Systems”, Decay Heat Removal and Natural Convection in Fast Breeder Reactors, p. 69, A. K. AGRAWAL and J. G. GUPPY, Eds., Hemisphere Publishing Corp., Washington, D.C. (1981).
  • M. P. HEISLER and R. M. SINGER, “Facility Requirements for Natural Convection Shutdown Heat Removal System Testing”, Decay Heat Removal and Natural Convection in Fast Breeder Reactors, p. 113, A. K. AGRAWAL and J. G. GUPPY, Eds., Hemisphere Publishing Corp., Washington, D.C. (1981).
  • W. A. MEDWID, L. L. PARME, and A. SHENOY, “Design, Analysis, and Verification of Natural Circulation in the GCFR”, Decay Heat Removal and Natural Convection in Fast Breeder Reactors, p. 357, A. K. AGRAWAL and J. G. GUPPY, Eds., Hemisphere Publishing Corp., Washington, D.C. (1981).
  • E. L. GLUEKLER, S. S. GREWAL, and T. A. SHIH, “Natural Convection Water Simulation of Flow Phenomena in Sodium Cooled Reactors,” presented at Specialists’ Mtg. Liquid Metals Thermal Hydraulics, Boston, Massachusetts, October 5–6, 1981.
  • T. A. SHIH, J. L. BENNETT, K. L. LEE, E. L. GLUEKLER, and R. W. McGRIFF, “Shutdown Core Coolability Model Test, Volume I: Test Description and Analysis,” GEFR-00562, General Electric Co. (1983).
  • “Natural Circulation Experiments for PWR High-Pressure Accidents,” TR-102815, Electric Power Research Institute (1993).
  • W. T. SHA and V. L. SHAH, “Natural Convection Phenomena in a Prototypic PWR During a Postulated Degraded Core Accident,” TR-103574, Electric Power Research Institute (1994).

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