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Liquid-Metal Blankets and Magnetohydrodynamic Effect

Comparison of Three MHD Flow Control Methods for Self-Cooled Liquid Metal BlanketsFootnote*

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Pages 866-871 | Published online: 10 Aug 2017

REFERENCES

  • J. S. WALKER and B. F. PICOLOGLOU, “MHD Flow Control as a Design Approach for Self-Cooled Liquid-Metal Blankets of Magnetic Confinement Fusion Reactors,” Fusion Technology, Vol. 8, No. 1, Part 2a, 270–275 (1985).
  • J. S. WALKER, “Magnetohydrodynamic Flows in Rectangular Ducts with Thin Conducting Walls, Part 1. Constant-area and Variablearea Ducts with Strong Uniform Magnetic Fields,” Journal de Mecanique, Vol. 20, No. 1, 79–112 (1981).
  • J. S. WALKER, “Liquid-metal Flow in a Duct Whose Cross Section Changes from a Rectangle to a Trapezoid, with Applications in Fusion Blanket Designs,” ANL/FPP/TM-206, Argonne National Laboratory (1986).
  • J. S. WALKER, “Liquid-metal Flow in a Rectangular Duct with a Non-uniform Magnetic Field,” ANL/FPP/TM-207, Argonne National Laboratory (1986).
  • D. L. SMITH et al, “Blanket Comparison and Selection Study, Final Report,” Argonne National Laboratory, ANL/FPP-84-1, Sept., 1984.
  • C. C. BAKER et al, “Tokamak Power Systems Studies, FY-1985”, Argonne National Laboratory, ANL/FPP-85-2, December, 1985.
  • S. MALANG, “Liquid Metal Cooled Blanket for NET,” Institut fur Reaktorbauelemente, Kernforschungszentrum Karlsruhe (1986).

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