10
Views
10
CrossRef citations to date
0
Altmetric
Technical Paper

Saddle Point Condition for D-3He Tokamak Fusion Reactor

, &
Pages 234-250 | Published online: 09 May 2017

References

  • C. C. BAKER, A. BOLON, R. CLEMMER, K. EVANS, Jr., J. JUNG, D. SMITH, and L. TURNER, “Fusion Reactor Technology Impact of Alternative Fusion Fuels,” Proc. 8th Symp. Engineering Problems in Fusion Research, San Francisco, California, November 13–16, 1979, p. 861, Institute of Electrical and Electronics Engineers.
  • S. ATZENI and B. COPPI, “Ignition Experiments for Neutronless Fusion Reactions,” Comments Plasma Phys., 6, 77 (1980).
  • E. GREENSPAN and G. H. MILEY, “Deuterium-Based Plasmas as a Source for Helium-3,” Nucl. Technol. / Fusion, 2, 43 (1982).
  • L. J. WITTENBERG, J. F. SANTARIUS, and G. L. KULCINSKI, “Lunar Source of 3He for Commercial Fusion Power,” Fusion Technol., 10, 167 (1986).
  • G. L. KULCINSKI et al., “APOLLO —An Advanced Fuel Fusion Reactor for the 21st Century,” Fusion Technol., 15, 1233 (1989).
  • B. COPPI and L. E. SUGIYAMA, “Questions in Advanced Fuel Fusion,” Laboratory Report PTP-88/6, Massachusetts Institute of Technology (1988).
  • G. VLAD, “Energy Balance Code for the Simulation of D-T, D-3He, and Catalyzed D-D Burning in High-Field Tokamaks of the OMITRON Type,” Nuovo Cimento, 84, 141 (1984).
  • O. MITARAI, A. HIROSE, and H. M. SKARSGARD, “Generalized Ignition Contour Map and Scaling Law Requirement for Reaching Ignition in a Tokamak Reactor,” Nucl. Fusion, 28, 2141 (1988).
  • O. MITARAI, A. HIROSE, and H. M. SKARSGARD, “Generalized Saddle Point Condition for Ignition in a Tokamak Reactor with Temperature and Density Profiles,” Fusion Technol., 16, 197 (1989).
  • W. A. HOULBERG, S. E. ATTENBERGER, and L. M. HIVELY, “Contour Analysis of Fusion Reactor Plasma Performance,” Nucl. Fusion, 22, 935 (1982).
  • R. J. GOLDSTON, “Energy Confinement Scaling in Tokamaks: Some Implications of Recent Experiments with Ohmic and Strong Auxiliary Heating,” Plasma Phys. Controlled Fusion, 26, 87 (1984).
  • L. M. HIVELY, “Convenient Computational Forms for Maxwellian Reactivities,” Nucl. Fusion, 17, 873 (1977).
  • J. M. DAWSON, “Advanced Fusion Reactors,” in Fusion, Vol. 1, Part B, p. 453, E. TELLER, Ed., Academic Press, New York (1981).
  • G. H. MILEY, Fusion Energy Conversion, American Nuclear Society, La Grange Park, Illinois (1976).
  • B. A. TRUBNIKOV, “Universal Coefficients for Synchrotron Emission from Plasma Configurations,” in Reviews of Plasma Physics, Vol. 7, p. 345, M. A. LEONTOVICH, Ed., Consultants Bureau, New York (1979).
  • R. A. KRAJCIK, “The Effect of a Metallic Reflector upon Cyclotron Radiation,” Nucl. Fusion, 13, 7 (1973).
  • S. TAMOR, “Calculation of Energy Transport by Cyclotron Radiation in Fusion Plasmas,” Nucl. Technol./Fusion, 3, 293 (1983).
  • O. MITARAI, S. W. WOLFE, A. HIROSE, and H. M. SKARSGARD, “Alternating Current Tokamak Reactor with Long Pulses,” Fusion Technol., 15, 204 (1989).
  • G. A. NAVRATIL and T. C. MARSHALL, “High-Beta Tokamak Operation in the Second Stability Regime,” Comments Plasma Phys. Controlled Fusion, 10, 185 (1986).
  • D. A. EHST et al., “Tokamak Power System Studies: A Second Stability Power Reactor,” Proc. 12th Symp. Fusion Engineering, Monterey, California, October 12–16, 1987, Vol. 1, p. 489, Institute of Electrical and Electronics Engineers (1987).
  • S. A. SABBAGH et al., “Second Stability Regime: Parameterization and Access,” Proc. 12th Int. Conf. Plasma Physics and Controlled Nuclear Fusion Research, Nice, France, October 12–19, 1988, IAEA-CN-50/D-IV-14, International Atomic Energy Agency (1989).
  • K. YAMAZAKI and W. T. REIERSEN, “‘Crescent’-Shaped Tokamak for Compact Ignition,” Comments Plasma Phys. Controlled Fusion, 10, 69 (1986).
  • F. TROYON, R. GRUBER, H. SAURENMANN, S. SEMENZATO, and S. SUCCI, “MHD-Limit to Plasma Confinements,” Plasma Phys. Controlled Fusion, 26, 209 (1984).
  • L. J. WITTENBERG, “Helium-3 Fueling Concepts for Magnetically Confined Fusion,” Proc. 12th Symp. Fusion Engineering, Monterey, California, October 12–16, 1987, Vol. 2, p. 787, Institute of Electrical and Electronics Engineers (1987).
  • N. A. UCKAN, “Tokamak Confinement Projections and Performance Goals,” Fusion Technol., 15, 391 (1989).
  • N. A. UCKAN and J. SHEFFIELD, “A Simple Procedure for Establishing Ignition Conditions in Tokamaks,” in Tokamak Start-Up Problems and Scenarios Related to the Transient Phases of a Thermonuclear Fusion Reactor, p. 45, H. KNOEPFEL, Ed., Plenum Press, New York (1986).
  • W. KERNBICHLER, G. H. MILEY, and M. HEINDLER, “D-3He Fuel Cycles for Neutron Lean Reactors,” Fusion Technol., 15, 1142 (1989).
  • G. A. EMMERT et al., “Possibilities for Breakeven and Ignition of D-3He Fusion Fuel in a Near Term Tokamak,” Nucl. Fusion, 29, 1427 (1989).
  • J. H. SCHULTZ, L. BROMBERG, and D. R. COHN, “Ignition and Thermal Stability Characteristics of Advanced-Fuel Tokamak Plasmas with Empirical Scaling,” Nucl. Fusion, 20, 703 (1980).
  • R. M. KULSRUD, H. P. FURTH, E. J. VALEO, and M. GOLDHABER, “Fusion Reactor Plasma with Polarized Nuclei,” Phys. Rev. Lett., 49, 1248 (1982).
  • O. MITARAI, “Saddle Point Condition and Its Dependence on Spin Polarized Fusion in a D-3He Tokamak Reactor,” IONICS Ion Sci. Technol., 10, 15 (1988) (in Japanese).
  • J. GALAMBOS, J. GILLIGAN, E. GREENSPAN, P. STROUD, and G. H. MILEY, “Discrete Nuclear Elastic Scattering Effects in Cat-D and D-3He Fusion Plasmas,” Nucl. Fusion, 24, 739 (1984).
  • C. DI NICOLA, A. FUBINI, and E. PEDRETTI, “Neutron Production Rate vs. Time During Start-Up of the Tritium-Assisted D-3He CIT Machine,” Proc. 12th Symp. Fusion Engineering, Monterey, California, Vol. 2, p. 860, Institute of Electrical and Electronics Engineers (1987).
  • O. MITARAI, “Saddle Point Condition with Confinement Degradation Effect Due to Fusion Power in D-T and D-3He Tokamak Reactor,” Bull. Am. Phys. Soc., Div. Plasma Phys. (Nov. 1989).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.