Detailed implosion modeling of deuterium-tritium layered experiments on the National Ignition Facility

被引:129
|
作者
Clark, D. S. [1 ]
Hinkel, D. E. [1 ]
Eder, D. C. [1 ]
Jones, O. S. [1 ]
Haan, S. W. [1 ]
Hammel, B. A. [1 ]
Marinak, M. M. [1 ]
Milovich, J. L. [1 ]
Robey, H. F. [1 ]
Suter, L. J. [1 ]
Town, R. P. J. [1 ]
机构
[1] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA
关键词
TARGETS;
D O I
10.1063/1.4802194
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
More than two dozen inertial confinement fusion ignition experiments with cryogenic deuterium-tritium layers have now been performed on the National Ignition Facility (NIF) [G. H. Miller et al., Opt. Eng. 443, 2841 (2004)]. Each of these yields a wealth of data including neutron yield, neutron down-scatter fraction, burn-averaged ion temperature, x-ray image shape and size, primary and down-scattered neutron image shape and size, etc. Compared to 2-D radiation-hydrodynamics simulations modeling both the hohlraum and the capsule implosion, however, the measured capsule yield is usually lower by a factor of 5 to 10, and the ion temperature varies from simulations, while most other observables are well matched between experiment and simulation. In an effort to understand this discrepancy, we perform detailed post-shot simulations of a subset of NIF implosion experiments. Using two-dimensional HYDRA simulations [M. M. Marinak, et al., Phys. Plasmas 8, 2275 (2001).] of the capsule only, these simulations represent as accurately as possible the conditions of a given experiment, including the as-shot capsule metrology, capsule surface roughness, and ice layer defects as seeds for the growth of hydrodynamic instabilities. The radiation drive used in these capsule-only simulations can be tuned to reproduce quite well the measured implosion timing, kinematics, and low-mode asymmetry. In order to simulate the experiments as accurately as possible, a limited number of fully three-dimensional implosion simulations are also being performed. Despite detailed efforts to incorporate all of the effects known and believed to be important in determining implosion performance, substantial yield discrepancies remain between experiment and simulation. Some possible alternate scenarios and effects that could resolve this discrepancy are discussed. (C) 2013 AIP Publishing LLC.
引用
收藏
页数:14
相关论文
共 50 条
  • [1] DEUTERIUM-TRITIUM FUEL LAYER FORMATION FOR THE NATIONAL IGNITION FACILITY
    Kozioziemski, B. J.
    Mapoles, E. R.
    Sater, J. D.
    Chernov, A. A.
    Moody, J. D.
    Lugten, J. B.
    Johnson, M. A.
    [J]. FUSION SCIENCE AND TECHNOLOGY, 2011, 59 (01) : 14 - 25
  • [2] Indications of flow near maximum compression in layered deuterium-tritium implosions at the National Ignition Facility
    Johnson, M. Gatu
    Knauer, J. P.
    Cerjan, C. J.
    Eckart, M. J.
    Grim, G. P.
    Hartouni, E. P.
    Hatarik, R.
    Kilkenny, J. D.
    Munro, D. H.
    Sayre, D. B.
    Spears, B. K.
    Bionta, R. M.
    Bond, E. J.
    Caggiano, J. A.
    Callahan, D.
    Casey, D. T.
    Doppner, T.
    Frenje, J. A.
    Glebov, V. Yu.
    Hurricane, O.
    Kritcher, A.
    LePape, S.
    Ma, T.
    Mackinnon, A.
    Meezan, N.
    Patel, P.
    Petrasso, R. D.
    Ralph, J. E.
    Springer, P. T.
    Yeamans, C. B.
    [J]. PHYSICAL REVIEW E, 2016, 94 (02)
  • [3] Demonstration of High Performance in Layered Deuterium-Tritium Capsule Implosions in Uranium Hohlraums at the National Ignition Facility
    Doeppner, T.
    Callahan, D. A.
    Hurricane, O. A.
    Hinkel, D. E.
    Ma, T.
    Park, H. -S.
    Hopkins, L. F. Berzak
    Casey, D. T.
    Celliers, P.
    Dewald, E. L.
    Dittrich, T. R.
    Haan, S. W.
    Kritcher, A. L.
    MacPhee, A.
    Le Pape, S.
    Pak, A.
    Patel, P. K.
    Springer, P. T.
    Salmonson, J. D.
    Tommasini, R.
    Benedetti, L. R.
    Bond, E.
    Bradley, D. K.
    Caggiano, J.
    Church, J.
    Dixit, S.
    Edgell, D.
    Edwards, M. J.
    Fittinghoff, D. N.
    Frenje, J.
    Johnson, M. Gatu
    Grim, G.
    Hatarik, R.
    Havre, M.
    Herrmann, H.
    Izumi, N.
    Khan, S. F.
    Kline, J. L.
    Knauer, J.
    Kyrala, G. A.
    Landen, O. L.
    Merrill, F. E.
    Moody, J.
    Moore, A. S.
    Nikroo, A.
    Ralph, J. E.
    Remington, B. A.
    Robey, H. F.
    Sayre, D.
    Schneider, M.
    [J]. PHYSICAL REVIEW LETTERS, 2015, 115 (05)
  • [4] Copper activation deuterium-tritium neutron yield measurements at the National Ignition Facility
    Cooper, G. W.
    Ruiz, C. L.
    Leeper, R. J.
    Chandler, G. A.
    Hahn, K. D.
    Nelson, A. J.
    Torres, J. A.
    Smelser, R. M.
    McWatters, B. R.
    Bleuel, D. L.
    Yeamans, C. B.
    Knittel, K. M.
    Casey, D. T.
    Frenje, J. A.
    Johnson, M. Gatu
    Petrasso, R. D.
    Styron, J. D.
    [J]. REVIEW OF SCIENTIFIC INSTRUMENTS, 2012, 83 (10):
  • [5] Capsule modeling of high foot implosion experiments on the National Ignition Facility
    Clark, D. S.
    Kritcher, A. L.
    Milovich, J. L.
    Salmonson, J. D.
    Weber, C. R.
    Haan, S. W.
    Hammel, B. A.
    Hinkel, D. E.
    Marinak, M. M.
    Patel, M. V.
    Sepke, S. M.
    [J]. PLASMA PHYSICS AND CONTROLLED FUSION, 2017, 59 (05)
  • [6] Experimental results of radiation-driven, layered deuterium-tritium implosions with adiabat-shaped drives at the National Ignition Facility
    Smalyuk, V. A.
    Robey, H. F.
    Doppner, T.
    Casey, D. T.
    Clark, D. S.
    Jones, O. S.
    Milovich, J. L.
    Peterson, J. L.
    Bachmann, B.
    Baker, K. L.
    Benedetti, L. R.
    Hopkins, L. F. Berzak
    Bionta, R.
    Bond, E.
    Bradley, D. K.
    Callahan, D. A.
    Celliers, P. M.
    Cerjan, C.
    Chen, K. -C.
    Goyon, C.
    Grim, G.
    Dixit, S. N.
    Eckart, M. J.
    Edwards, M. J.
    Farrell, M.
    Fittinghoff, D. N.
    Frenje, J. A.
    Gatu-Johnson, M.
    Gharibyan, N.
    Haan, S. W.
    Hamza, A. V.
    Hartouni, E.
    Hatarik, R.
    Havre, M.
    Hohenberger, M.
    Hoover, D.
    Hurricane, O. A.
    Izumi, N.
    Jancaitis, K. S.
    Khan, S. F.
    Knauer, J. P.
    Kroll, J. J.
    Kyrala, G.
    Lafortune, K. N.
    Landen, O. L.
    Ma, T.
    MacGowan, B. J.
    MacPhee, A. G.
    Mauldin, M.
    Merrill, F. E.
    [J]. PHYSICS OF PLASMAS, 2016, 23 (10)
  • [7] Progress in modelling ignition implosion experiments on the National Ignition Facility
    Clark, D. S.
    Eder, D. C.
    Haan, S. W.
    Hammel, B. A.
    Hinkel, D. E.
    Jones, O. S.
    Marinak, M. M.
    Milovich, J. L.
    Patel, P. K.
    Salmonson, J. D.
    Sepke, S. M.
    Thomas, C. A.
    Town, R. P. J.
    [J]. 8TH INTERNATIONAL CONFERENCE ON INERTIAL FUSION SCIENCES AND APPLICATIONS (IFSA 2013), 2016, 688
  • [8] Fast ignition upon the implosion of a thin shell onto a precompressed deuterium-tritium ball
    S. Yu. Gus’kov
    N. V. Zmitrenko
    [J]. Plasma Physics Reports, 2012, 38 : 863 - 878
  • [9] Fast ignition upon the implosion of a thin shell onto a precompressed deuterium-tritium ball
    Gus'kov, S. Yu.
    Zmitrenko, N. V.
    [J]. PLASMA PHYSICS REPORTS, 2012, 38 (11) : 863 - 878
  • [10] Double cylinder implosion experiments at the National Ignition Facility
    Sauppe, J. P.
    Sagert, I.
    Day, T. H.
    Flippo, K. A.
    Kline, J. L.
    Kot, L.
    Palaniyappan, S.
    Roycroft, R. A.
    Schmidt, D. W.
    [J]. HIGH ENERGY DENSITY PHYSICS, 2024, 53