OVERVIEW OF FUSION BLANKET R&D IN THE US OVER THE LAST DECADE

  • ABDOU M. A. (Mechanical & Aerospace Engineering Department, 44-114 Engineering IV, 420 Westwood Plaza University of California) ;
  • MORLEY N. B. (Mechanical & Aerospace Engineering Department, 44-114 Engineering IV, 420 Westwood Plaza University of California) ;
  • YING A. Y. (Mechanical & Aerospace Engineering Department, 44-114 Engineering IV, 420 Westwood Plaza University of California) ;
  • SMOLENTSEV S. (Mechanical & Aerospace Engineering Department, 44-114 Engineering IV, 420 Westwood Plaza University of California) ;
  • CALDERONI P. (Mechanical & Aerospace Engineering Department, 44-114 Engineering IV, 420 Westwood Plaza University of California)
  • 발행 : 2005.10.01

초록

We review here research and development progress achieved in US Plasma Chamber technology roughly over the last decade. In particular, we focus on two major programs carried out in the US: the APEX project (1998-2003) and the US ITER TBM activities (2003-present). The APEX project grew out of the US fusion program emphasis in the late 1990s on more fundamental science and innovation. APEX was commissioned to investigate novel technology concepts for achieving high power density and high temperature reactor coolants. In particular, the idea of liquid walls and the related research is described here, with some detailed examples of liquid metal and molten salt magnetohydrodynamic and free surface effects on flow control and heat transfer. The ongoing US ITER Test Blanket Module (TBM) program is also described, where the current first wall/blanket concepts being considered are the dual coolant lead lithium concept and the solid breeder helium cooled concepts, both using ferritic steel structures. The research described for these concepts includes both thermofluid MHD issues for the liquid metal coolant in the DCLL, and thermomechanical issues for ceramic breeder packed pebble beds in the solid breeder concept. Finally, future directions for ongoing research in these areas are described.

키워드

참고문헌

  1. M. Abdou, 'ITER Test Program: Key Technical Aspects,' Fusion Technology 19, 1439-1451: (1991) https://doi.org/10.13182/FST91-A29544
  2. M. Abdou, 'A Volumetric Neutron Source for Fusion Nuclear Technology Testing and Development,' Fusion Eng. Des. 27, 111-153 (1995) https://doi.org/10.1016/0920-3796(95)90122-1
  3. M. Sawan, M. Abdou, 'Physics and technology conditions for attaining tritium self-sufficiency for the D-T fuel cycle', presented at the 7th International Symposium on Fusion Nuclear Technology, May 22-27 2005, Tokyo, Japan and to be published in Fusion Eng. Des. (2005)
  4. M. Sawan, 'Geometrical, Spectral and Temporal Differences between ICF and MCF Reactors and Their Impact on Blanket Nuclear Parameters,' Fusion Technol. 10, 1483-1488 (1986) https://doi.org/10.13182/FST86-A24943
  5. M. Youssef and M. Abdou, 'Uncertainties in Prediction of Tritium Breeding in Candidate Blanket Designs Due to Present Uncertainties in Nuclear Data Base,' Fusion Technol. 9, 286-306 (1986) https://doi.org/10.13182/FST86-A24716
  6. M. Sawan et al., 'Neutronics Assessment of Molten Salt Breeding Blanket Design Options,' Fusion Sci. Technol. 47, 510-517 (2005) https://doi.org/10.13182/FST05-A735
  7. L.A. El-Guebaly and the ARIES Team, 'Three-Dimensional Neutronics Study for ARIES-ST Power Plant,' Fusion Technol. 34, 1084-1088 (1998)
  8. M. Youssef, M. Sawan, A. Ying, 'Nuclear analysis of two 'look-alike' helium-cooled pebble bed test blanket submodules proposed by the US for testing in ITER', presented at the 7th International Symposium on Fusion Nuclear Technology, May 22-27 2005, Tokyo, Japan and to be published in Fusion Eng. Des. (2005)
  9. M. Sawan and M. Youssef, 'Three-Dimensional Neutronics Assessment of Dual Coolant Molten Salt Blankets with Comparison to One-Dimensional Results,' presented at the 7th International Symposium on Fusion Nuclear Technology, May 22-27 2005, Tokyo, Japan and to be published in Fusion Eng. Des (2005)
  10. L. El-Guebaly and the ARIES Team, 'Potential Coatings for Li/V System: Nuclear Performance and Design Issues,' presented at the 7th International Symposium on Fusion Nuclear Technology, May 22-27 2005, Tokyo, Japan and to be published in Fusion Eng. Des (2005)
  11. M. Abdou, E. Vold, C. Gung, M. Youssef and K. Shin, 'Deuterium-Tritium Fuel Self-Sufficiency in Fusion Reactors', Fusion Technol. 9, 250-285 (1986) https://doi.org/10.13182/FST86-A24715
  12. W. Kuan and M. Abdou, 'A New Approach for Assessing the Required Tritium Breeding Ratio and Startup Inventory in Future Fusion Reactors', Fusion Technol. 35, 309-353 (1999) https://doi.org/10.13182/FST99-A84
  13. M. Abdou and the APEX Team, 'Exploring Novel High Power Density Concepts for Attractive Fusion Systems', Fusion Eng. Des. 45, 145-167 (1999) https://doi.org/10.1016/S0920-3796(99)00018-6
  14. M.A. Abdou and the APEX Team, 'On the exploration of innovative concepts for fusion chamber technology,' Fusion Eng. Des. 54, 181-247 (2001) https://doi.org/10.1016/S0920-3796(00)00433-6
  15. C.P.C. Wong, S. Malang, S. Nishio, R. Raffray, A. Sagara, 'Advanced high performance solid wall blanket concepts,' Fusion Eng. Des. 61-62, 283-293 (2002) https://doi.org/10.1016/S0920-3796(02)00295-8
  16. C.P.C. Wong, S. Malang, M. Sawan, I. Sviatoslavsky, E. Mogahed, S. Smolentsev, S. Majumdar, B. Merrill, R. Mattas, M. Friend et al. 'Molten salt self-cooled solid first wall and blanket design based on advanced ferritic steel', Fusion Eng. Des. 72, 245-275 (2004) https://doi.org/10.1016/j.fusengdes.2004.07.011
  17. L.E. Zakharov, 'Magnetic propulsion of intense lithium streams in a tokomak magnetic field,' Phys. Rev. Lett. 90, 045001/1-4 (2003)
  18. F. Najmabadi and the ARIES Team, 'Overview of ARIES -RS tokamak fusion power plant,' Fusion Eng. Des. 41, 365-370 (1998) https://doi.org/10.1016/S0920-3796(97)00153-1
  19. A.Y. Ying, M.A. Abdou, N. Morley, T. Sketchley, R. Woolley, J. Burris, R. Kaita, P. Fogarty, H. Huang, X. Lao et al., 'Exploratory studies of flowing liquid metal divertor options for fusion-relevant magnetic fields in the MTOR facility,' Fusion Eng. Des. 72,35-62 (2004) https://doi.org/10.1016/j.fusengdes.2004.07.004
  20. K. Gulec, M. Abdou, R. W. Moir, N. B. Morley, A. Y. Ying, 'Novel liquid blanket configurations and their hydrodynamic analyses for innovative confinement concepts,' Fusion Eng. Des. 49-50, 567-576 (2000) https://doi.org/10.1016/S0920-3796(00)00282-9
  21. R.E. Nygren, T.D. Rognlien, M.E. Rensink, S.Y. Smolentsev, M.Z. Youssef, M.E. Sawan, B.J. Merrill, C. Eberle, P.J. Fogarty, B.E. Nelson et al., 'A fusion reactor design with a liquid first wall and divertor,' Fusion Eng. Des. 72, 181-221 (2004) https://doi.org/10.1016/j.fusengdes.2004.07.007
  22. T.D. Rognlien and M.E. Rensink, 'Edge-plasma properties in liquid-wall environments,' 8th Int. Workshop on Edge Plasma Theory in Fusion Devices, Helsinki, Finland, (Sep. 2001)
  23. N.B. Morley, S. Smolentsev and D. Gao, 'Modeling infinite/axisymmetric liquid metal magnetohydrodynamic free surface flows,' Fusion Eng. Des. 63-64, 343-351 (2002) https://doi.org/10.1016/S0920-3796(02)00186-2
  24. J.M. McDonald, R.E. Nygren, T.J. Lutz, T.J. Tanaka, M.A. Ulrickson, T.J. Boyle, K.P. Troncosa, 'Measurement of the melting point temperature of several lithium-sodiumberyllium fluoride salt (flinabe) mixtures.' Fusion Sci. Technol., 47, 554-8 (2005) https://doi.org/10.13182/FST47-554
  25. N.B. Morley, M.A. Abdou, M. Anderson, P. Calderoni, R.J. Kurtz, R. Nygren, R. Raffray, M. Sawan, P. Sharpe, S. Smolentsev, S. Willms, A.Y. Ying, 'Overview of Fusion Nuclear Technology in the US,' presented at the 7th International Symposium on Fusion Nuclear Technology, May 22-27 2005, Tokyo, Japan and to be published in Fusion Eng. Des. (2005)
  26. C.P.C. Wong, S. Malang, M.Sawan, M. Dagher, S.Smolentsev, et al., 'An overview of dual coolant Pb-1 7Li breeder first wall and blanket concept development for the US ITERTBM design,' presented at the 7th International Symposium on Fusion Nuclear Technology, May 22-27 2005, Tokyo, Japan and to be published in Fusion Eng. Des. (2005)
  27. P.F. Peterson, 'Multiple-reheat Brayton cycles for nuclear power conversion with molten coolants,' Nucl. Tech. 144, 279-288 (2003) https://doi.org/10.13182/NT144-279
  28. J.N. Brooks, J.P. Allain, R. Bastasz, R. Doerner, T. Evans, A. Hassanein, R. Kaita, S. Luckhardt, R. Maingi, R. Majeski, N.B. Morley, N. Narula, T. Rognlien, D. Ruzic, R. Stubbers, M. Ulrickson, C.P.C. Wong, A. Ying, 'Overview of the ALPS Program,' Fusion Sci. Technol. 47, 669-677 (2005) https://doi.org/10.13182/FST05-A763
  29. P.V. Dankwerts, 'Significance of liquid-film coefficients in gas absorption,' Ind. Eng. Chem. 43, 1460-1467 (1951) https://doi.org/10.1021/ie50498a055
  30. S. Smolentsev, N. Morley, B. Freeze, R. Miraghaie, J.-C. Nave, S. Banerjee, A. Ying and M. Abdou, 'Thermofluid modeling and experiments for free surface flows of low-conductivity fluid in fusion systems,' Fusion Eng. Des.. 72, 63-81 (2004) https://doi.org/10.1016/j.fusengdes.2004.07.003
  31. S. Smolentsev, M. Abdou, N. Morley, A. Ying, T. Kunugi, 'Application of the K-e model to open channel flows in a magnetic field,' Int. J. of Eng. Sci. 40, 693-711 (2002) https://doi.org/10.1016/S0020-7225(01)00088-X
  32. B. Freeze, S. Smolentsev, N. Morley, M. Abdou, 'Characterization of the effect of Froude number on surface waves and heat transfer in inclined turbulent open channel water flows,' Int. J. Heat Mass Trans. 46, 3765-3775 (2003) https://doi.org/10.1016/S0017-9310(03)00197-2
  33. S. Satake, T. Kunugi, S. Smolentsev, 'Advances in direct numerical simulation for MHD modeling of free surface flows,' Fusion Eng. Des. 61-62, 95-102 (2002) https://doi.org/10.1016/S0920-3796(02)00157-6
  34. S. Smolentsev, R. Miraghaie, 'Study of a free surface in open-channel water flows in the regime from 'weak' to 'strong' turbulence,' Int. J. Multiphase Flow, 31, 921-939 (2005) https://doi.org/10.1016/j.ijmultiphaseflow.2005.05.008
  35. N.B. Morley, J. Burris, 'The MTOR LM-MHD flow facility, and preliminary experimental investigation of thin layer, liquid metal flow in a 1/R toroidal magnetic field,' Fusion Sci. Technol. 44, 74-78 (2003) https://doi.org/10.13182/FST03-A313
  36. N.B. Morley, S. Smolentsev, R. Munipalli, M.-J. Ni, D. Gao and M. Abdou, 'Progress on the modeling of liquid metal, free surface, MHD flows for fusion liquid walls,' Fusion Eng. Des. 72, 3-34 (2004) https://doi.org/10.1016/j.fusengdes.2004.07.013
  37. H. L. Huang, A. Ying and M. A. Abdou, '3D MHD free surface fluid flow simulation based on magnetic-field induction equations,' Fusion Eng. Des. 63-64, 361-368 (2002) https://doi.org/10.1016/S0920-3796(02)00261-2
  38. S. Smolentsev, M. Abdou, T.Kunugi, N.B. Morley, S.Satake and A. Ying, 'Modeling of liquid walls in APEX study,' Int. J. Appl. Electromag. Mech. 13, 373-379 (2001/2002)
  39. S. Smolentsev, M. Abdou, 'Open-surface MHD flow over a curved wall in the 3-D thin-shear-layer approximation,' Appl. Math. Model. 29, 215-234 (2005) https://doi.org/10.1016/j.apm.2004.07.002
  40. D. Gao, N.B. Morley, V. Dhir, 'Numerical simulation of wavy falling film flows using VOF method,' J. Comp. Phys. 192, 624-642 (2003) https://doi.org/10.1016/j.jcp.2003.07.013
  41. D. Gao, N.B. Morley, 'Equilibrium and initial linear stability analysis of liquid metal falling film flows in a varying spanwise magnetic field,' Magnetohydrodynamics, 38, 359-375 (2002)
  42. R. Munipalli et al. 'Development of a 3-D incompressible free surface MHD computational environment for arbitrary geometries: HIMAG.' DOE SBIR Phase-II Final Report (Jun 2003)
  43. J.H. Fokkens, 'Thermo-Mechanical Finite Element Analyses for the HCPB In-Pile Test Element,' NRG, Petten, 21477/02.50560/P (Jun 2003)
  44. D. Hofer, M. Kamlah, S. Hermsmeyer, 'Revision of Drucker -Prager cap creep modelling of pebble beds in fusion blankets,' presented at CBBI-11, Tokyo (Dec. 2003)
  45. A. Ying, H. Huang and M. Abdou, 'Numerical simulation of ceramic breeder thermal creep behavior,' J. Nucl. Mat. 307-311, 827-831 (2002) https://doi.org/10.1016/S0022-3115(02)01276-X
  46. A.Y. Ying, T. Yokomine, A. Shimizu, M. Abdou, A. Kohyama, 'Impact of Material System Thermomechanics and Thermofluid Performance on He-Cooled Ceramic Breeder Blanket Designs with SiCf/SiC,' J. Nucl. Mat. 329-333PB, 1605-1609 (2004)
  47. M.C. Billone, Y.Y. Liu, R.B. Poeppel, J.L. Routbort, K.C. Goretta, D.S. Kupperman, 'Elastic and Creep Properties of Li2O,' J. Nucl. Mat. 141-143, 282-288, (1986) https://doi.org/10.1016/S0022-3115(86)80051-4
  48. L. Buhler, 'Continuum models for pebble beds in fusion blankets,' FZKA 6561, (2002)
  49. F. Parhami, R.M. McMeeking, A.C.F. Cooks, Z. Suo, 'A model for the sintering and coarsening of rows of spherical particles,' Mechanics of Materials, 31, 43-61 (1999) https://doi.org/10.1016/S0167-6636(98)00049-0
  50. MSC MARC, MSC Software Corporation, Los Angeles (Mar 2000)
  51. J. Reimann, E. Arbogast, S. Muller, K. Thomauske, 'Thermomechanical behavior of ceramic breeder pebble beds,' Proceedings of CBBI-7, 5.1-5.10 (Sep 1988)
  52. J. Reimann and G. Wormer, 'Thermal creep of Li4SiO4 pebble beds,' Fusion Eng. Des. 58-59, 647-651 (2001) https://doi.org/10.1016/S0920-3796(01)00513-0
  53. A. Ying, M. Abdou, P. Calderoni, S. Sharafat, M. Youssef, Z. An, A. Abou-Sena, E. Kim, S. Reyes, S. Willms, R. Kurtz, 'Solid Breeder Test Blanket Module Design and Analysis,' presented at the 7th International Symposium on Fusion Nuclear Technology, May 22-27 2005, Tokyo, Japan and to be published in Fusion Eng. Des. (2005)
  54. P. Calderoni, A. Ying, T. Sketchley, M.A. Abdou, 'Experimental study of the interaction of ceramic breeder pebble beds with structural materials under thermo-mechanical loads,' presented at the 7th International Symposium on Fusion Nuclear Technology, May 22-27 2005, Tokyo, Japan and to be published in Fusion Eng. Des. (2005)
  55. M.S. Tillack, S. Malang, High Performance PbLi blanket, Proc.17th IEE/NPSS Symposium on Fusion Engineering, Vol. 2, 1000-1004, San Diego, California (Oct 1997)
  56. D.K. Sze, M. Tillack et al., 'Blanket system selection for ARIES ST,' Fusion Eng. Des. 48, 371-378 (2000) https://doi.org/10.1016/S0920-3796(00)00146-0
  57. P. Norajitra, L. Buhler, U. Fischer, K. Kleefedt, S. Malang et al., 'The EU advanced dual coolant blanket concept using SiCf/SiC flow channel inserts as electrical and thermal insulators,' Fusion Eng. Des. 58-59, 629-634 (2001) https://doi.org/10.1016/S0920-3796(01)00506-3
  58. S.Smolentsev, M. Abdou, N.B. Morley, M. Sawan, S. Malang, C. Wong, 'Numerical analysis of MHD flow and heat transfer in a poloidal channel of the DCLL blanket with a $SiC_f$/SiC flow channel insert,' presented at the 7th International Symposium on Fusion Nuclear Technology, May 22-27 2005, Tokyo, Japan and to appear Fusion Eng. Des. (2005)
  59. S. Smolentsev, M. Abdou, 'Effect of a magnetic field on heat transfer in liquid metal channel flows under conditions of a fusion power reactor,' HEFAT 2005, 4th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamics, Cairo, Egypt (Sep 2005)
  60. S. Smolentsev, N.B. Morley, M. Abdou, 'Code development for analysis of MHD pressure drop reduction in a liquid metal blanket using insulation technique based on a fully developed flow model,' Fusion Eng. Des. 73, 83-93 (2005) https://doi.org/10.1016/j.fusengdes.2005.01.003
  61. A.R. Raffray et al., 'Design and material issues for high performance SiCf/SiC-based fusion power cores,' Fusion Eng. Des. 55, 55-95 (2001) https://doi.org/10.1016/S0920-3796(01)00181-8