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Matem. Mod., 2017, Volume 29, Number 9, Pages 19–32 (Mi mm3884)  

This article is cited in 7 scientific papers (total in 7 papers)

Numerical modeling of laser target compression in an external magnetic field

V. V. Kuzenovab, S. V. Ryzhkovb

a Ishlinsky Institute for Problems in Mechanics of RAS
b Bauman Moscow State Technical University

Abstract: The simplified one-dimensional mathematical model of the processes of compression of thermonuclear targets for MIF centrally symmetric coordinate system is presented. A method for high order that is used in the calculation of the basic physical processes occurring in the target plasma by applying an external magnetic field is considered.

Keywords: magneto-inertial confinement fusion, laser driver, inhomogeneous electric and magnetic fields, magnetized plasma, development of numerical methods.

Funding Agency Grant Number
Ministry of Education and Science of the Russian Federation 13.5240.2017/БЧ


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English version:
Mathematical Models and Computer Simulations, 2018, 10:2, 255–264

Received: 25.05.2016

Citation: V. V. Kuzenov, S. V. Ryzhkov, “Numerical modeling of laser target compression in an external magnetic field”, Matem. Mod., 29:9 (2017), 19–32; Math. Models Comput. Simul., 10:2 (2018), 255–264

Citation in format AMSBIB
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\by V.~V.~Kuzenov, S.~V.~Ryzhkov
\paper Numerical modeling of laser target compression in an external magnetic field
\jour Matem. Mod.
\yr 2017
\vol 29
\issue 9
\pages 19--32
\mathnet{http://mi.mathnet.ru/mm3884}
\elib{http://elibrary.ru/item.asp?id=29972277}
\transl
\jour Math. Models Comput. Simul.
\yr 2018
\vol 10
\issue 2
\pages 255--264
\crossref{https://doi.org/10.1134/S2070048218020096}
\scopus{http://www.scopus.com/record/display.url?origin=inward&eid=2-s2.0-85044935947}


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    Citing articles on Google Scholar: Russian citations, English citations
    Related articles on Google Scholar: Russian articles, English articles

    This publication is cited in the following articles:
    1. V. V. Kuzenov, S. V. Ryzhkov, “Approximate calculation of convective heat transfer near hypersonic aircraft surface”, J. Enhanc. Heat Transf., 25:2, SI (2018), 181–193  crossref  mathscinet  isi
    2. A. Yu. Chirkov, S. V. Ryzhkov, “Impact of powerful thermal and neutron fluxes on the structural elements of fusion and fission reactors”, Phys. Atom. Nuclei, 81:10 (2018), 1432–1440  crossref  isi  scopus
    3. V. V. Kuzenov, S. V. Ryzhkov, “Plasma dynamics modeling of the interaction of pulsed plasma jets”, Phys. Atom. Nuclei, 81:10 (2018), 1460–1464  crossref  isi  scopus
    4. V. V. Kuzenov, S. V. Ryzhkov, “Calculation of the radiation specifications of the target plasma in magneto-inertial fusion”, Phys. Atom. Nuclei, 81:11 (2018), 1611–1617  crossref  isi  scopus
    5. Ryzhkov S.V., Kuzenov V.V., “Analysis of the Ideal Gas Flow Over Body of Basic Geometrical Shape”, Int. J. Heat Mass Transf., 132 (2019), 587–592  crossref  isi  scopus
    6. Ryzhkov S.V., Kuzenov V.V., “New Realization Method For Calculating Convective Heat Transfer Near the Hypersonic Aircraft Surface”, Z. Angew. Math. Phys., 70:2 (2019), 46  crossref  mathscinet  isi  scopus
    7. Fedotova A.V., Tabakov V.V., Ovsyannikov M.V., Bruening J., “Ontological Modeling For Industrial Enterprise Engineering”, Proceedings of the Third International Scientific Conference Intelligent Information Technologies For Industry (Iiti'18), Vol 1, Advances in Intelligent Systems and Computing, 874, eds. Abraham A., Kovalev S., Tarassov V., Snasel V., Sukhanov A., Springer International Publishing Ag, 2019, 182–189  crossref  isi
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