Page 54 - Fundamentals of Magnetic Thermonuclear Reactor Design
P. 54

36     Fundamentals of Magnetic Thermonuclear Reactor Design


            REFERENCES
              [1]  V.E. Moiseenko, V.G. Kotenko, S.V. Chernitskiy, et  al.,
                                                  (Research on stellarator-mirror fission–
                fusion hybrid), Probl. At. Sci. Technol. Series Thermonucl. Fusion 36 (1) (2013) 44–56 http://
                vant.iterru.ru/vant_2013_1/3.pdf.
              [2]  B.A. Trubnikov,    (Plasma Theory), Energoatomizdat, Moscow,  (1996) (in
                Russian).
              [3]  V.A. Glukhikh, V.A. Belyakov, A.B. Mineev,
                                 (Physical and Engineering Fundamentals of Controlled Thermo-
                nuclear Fusion), Textbook, St. Petersburg Polytechnical University Publishing House, St.
                Petersburg, Russia,  (2006) pp. 348 (in Russian).
              [4]  M.V. Krivosheev,
                               (Designs of Fusion Reactors Based on Systems with Magnetic Plas-
                ma Confinement), D.V. Efremov Scientific Research Institute of Electrophysical Apparatus
                1945–2005, St. Petersburg,  (2006) 335-347 (in Russian).
              [5]  B.B. Kadomtsev, B.N. Kolbasov, V.V. Orlov, V.I. Pistunovich, I.V. Altovskij, G.E. Shatalov,
                et al., OTR — Experimental fusion-fission tokamak-reactor concept, Fusion Reactor Design
                and Technology 1986, in: Proceedings of the 4th IAEA Technical Committee Meeting and
                Workshop on Fusion Reactor Design and Technology, vol. 1, Yalta, USSR, 1986. IAEA,
                  Vienna, 1986, pp. 131–142.
              [6]  V.V. Orlov,                           (Test fusion reactor develop-
                ment), Probl. At. Sci. Technol. Series Thermonucl. Fusion 9 (2) (1986) 3–5 (in Russian).
              [7]  D.K. Kurbatov, M.L. Subbotin, E.A. Filimonova,
                                                    (Worldwide review of studies of
                demonstration fusion power reactors), Probl. At. Sci. Technol. Series Thermonucl. Fusion 33
                (3) (2010) 55–74 http://vant.iterru.ru/vant_2010_3/8.pdf.
              [8]  J.R. Gilleland, Yu.A. Sokolov, K. Tomabechi, R. Toschi, ITER Concept Definition, ITER
                Documentation Series No. 3, vol. 2, IAEA, Vienna, 1989, pp. 243–257.
              [9]  F.W. Perkins, et al., ITER Physics Basis, Nucl. Fusion 39 (12) (1999) 2137–2664 (special issue).
            [10]  K. Ikeda, et al., Progress in the ITER physics basis, Nucl. Fusion 47 (6) (2007) S404 (special
                issue).
            [11]  B.N. Kolbasov, V.A. Belyakov, E.N. Bondarchuk, A.A. Borisov, I.R. Kirillov, V.M. Leonov,
                et al., Russian concept for a DEMO-S demonstration fusion power reactor, Fusion Eng Des
                83 (7–9) (2008) 870–876.
              [12]  D.  Maisonnier,  I. Cook,  P. Sardain, et  al.,  A Conceptual Study  of  Commercial  Fusion
                Power Plants, Final Report of the European Fusion Power Plant Conceptual Study, EFDA
                (05)-27/4/10, revision 1 April 2005, EFDA-RPRE-5.0.
            [13]  F. Najmabadi, A.R. Raffray, ARIES-CS TeamThe ARIES compact stellarator fusion power
                plant, Fusion Sci. Technol. 54 (3) (2008) 655–672.
            [14]  F. Najmabadi, R.W. Conn, ARIES TeamThe ARIES Tokamak reactor studies, in: Proc. Fusion
                Power Associates Symposium, Pleasanton, CA, USA, April 9–10, 1992.
            [15]  F. Najmabadi, R.W. Conn, ARIES TeamThe ARIES-I tokamak reactor study, Fusion Technol.
                19 (1991) 783–790.
            [16]  F. Najmabadi, R.W. Conn, ARIES TeamThe ARIES-II and ARIES-IV second stability toka-
                mak reactors, Fusion Technol. 21 (1992) 1721–1728.
            [17]  K. Tomassen, The steady state tokamak, in: Proceedings of the 1999 Fusion Summer Study,
                Snowmass, CO, USA, July 11–23, 1999.
   49   50   51   52   53   54   55   56   57   58   59