On a variational formulation of the weakly nonlinear magnetic Rayleigh-Taylor instability

被引:8
作者
Ruiz, D. E. [1 ]
机构
[1] Sandia Natl Labs, POB 5800, Albuquerque, NM 87185 USA
关键词
PERTURBATION-THEORY; Z-PINCHES; PLASMA; COMPRESSION; PHYSICS; FUSION;
D O I
10.1063/1.5132750
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
The magnetic-Rayleigh-Taylor (MRT) instability is a ubiquitous phenomenon that occurs in magnetically-driven Z-pinch implosions. It is important to understand this instability since it can decrease the performance of such implosions. In this work, I present a theoretical model for the weakly nonlinear MRT instability. I obtain such a model by asymptotically expanding an action principle, whose Lagrangian leads to the fully nonlinear MRT equations. After introducing a suitable choice of coordinates, I show that the theory can be cast as a Hamiltonian system, whose Hamiltonian is calculated up to the sixth order in a perturbation parameter. The resulting theory captures the harmonic generation of MRT modes. It is shown that the amplitude at which the linear magnetic-Rayleigh-Taylor instability exponential growth saturates depends on the stabilization effect of the magnetic-field tension. Overall, the theory provides an intuitive interpretation of the weakly nonlinear MRT instability and provides a systematic approach for studying this instability in more complex settings. Published under license by AIP Publishing.
引用
收藏
页数:14
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共 75 条
[21]   TAYLOR INSTABILITY OF THE INTERFACE BETWEEN SUPERPOSED FLUIDS - SOLUTION BY SUCCESSIVE APPROXIMATIONS [J].
INGRAHAM, RL .
PROCEEDINGS OF THE PHYSICAL SOCIETY OF LONDON SECTION B, 1954, 67 (418) :748-752
[22]   Experimental measurements of a converging flux conserver suitable for compressing a field reversed configuration for magnetized target fusion [J].
Intrator, T ;
Taccetti, M ;
Clark, DA ;
Degnan, JH ;
Gale, D ;
Coffey, S ;
Garcia, J ;
Rodriguez, P ;
Sommars, W ;
Marshall, B ;
Wysocki, F ;
Siemon, R ;
Faehl, R ;
Forman, K ;
Bartlett, R ;
Cavazos, T ;
Faehl, RJ ;
Forman, K ;
Frese, MH ;
Fulton, D ;
Gueits, JC ;
Hussey, TW ;
Kirkpatrick, R ;
Kiuttu, GF ;
Lehr, FM ;
Letterio, JD ;
Lindemuth, I ;
McCullough, W ;
Moses, R ;
Peterkin, RE ;
Reinovsky, RE ;
Roderick, NF ;
Ruden, EL ;
Schoenberg, KF ;
Scudder, D ;
Shlachter, J ;
Wurden, GA .
NUCLEAR FUSION, 2002, 42 (02) :211-222
[23]   3-DIMENSIONAL RAYLEIGH-TAYLOR INSTABILITY .1. WEAKLY NONLINEAR-THEORY [J].
JACOBS, JW ;
CATTON, I .
JOURNAL OF FLUID MECHANICS, 1988, 187 :329-352
[24]   Radiation sources with planar wire arrays and planar foils for inertial confinement fusion and high energy density physics research [J].
Kantsyrev, V. L. ;
Chuvatin, A. S. ;
Safronova, A. S. ;
Rudakov, L. I. ;
Esaulov, A. A. ;
Velikovich, A. L. ;
Shrestha, I. ;
Astanovitsky, A. ;
Osborne, G. C. ;
Shlyaptseva, V. V. ;
Weller, M. E. ;
Keim, S. ;
Stafford, A. ;
Cooper, M. .
PHYSICS OF PLASMAS, 2014, 21 (03)
[25]   MAGNETIZED TARGET FUSION - AN OVERVIEW [J].
KIRKPATRICK, RC ;
LINDEMUTH, IR ;
WARD, MS .
FUSION TECHNOLOGY, 1995, 27 (03) :201-214
[26]   Direct measurement of the inertial confinement time in a magnetically driven implosion [J].
Knapp, P. F. ;
Martin, M. R. ;
Dolan, D. H. ;
Cochrane, K. ;
Dalton, D. ;
Davis, J. -P. ;
Jennings, C. A. ;
Loisel, G. P. ;
Romero, D. H. ;
Smith, I. C. ;
Yu, E. P. ;
Weis, M. R. ;
Mattsson, T. R. ;
McBride, R. D. ;
Peterson, K. ;
Schwarz, J. ;
Sinars, D. B. .
PHYSICS OF PLASMAS, 2017, 24 (04)
[27]   Anisotropy and feedthrough in magneto-Rayleigh-Taylor instability [J].
Lau, Y. Y. ;
Zier, J. C. ;
Rittersdorf, I. M. ;
Weis, M. R. ;
Gilgenbach, R. M. .
PHYSICAL REVIEW E, 2011, 83 (06)
[28]   Effect of core-corona plasma structure on seeding of instabilities in wire array Z pinches [J].
Lebedev, SV ;
Beg, FN ;
Bland, SN ;
Chittenden, JP ;
Dangor, AE ;
Haines, MG ;
Pikuz, SA ;
Shelkovenko, TA .
PHYSICAL REVIEW LETTERS, 2000, 85 (01) :98-101
[29]   Self-consistent, two-dimensional, magnetohydrodynamic simulations of magnetically driven flyer plates [J].
Lemke, RW ;
Knudson, MD ;
Robinson, AC ;
Haill, TA ;
Struve, KW ;
Asay, JR ;
Mehlhorn, TA .
PHYSICS OF PLASMAS, 2003, 10 (05) :1867-1874
[30]   PARAMETER SPACE FOR MAGNETIZED FUEL TARGETS IN INERTIAL CONFINEMENT FUSION [J].
LINDEMUTH, IR ;
KIRKPATRICK, RC .
NUCLEAR FUSION, 1983, 23 (03) :263-284