• DocumentCode
    113464
  • Title

    Numerical estimation of arc plasma thermodynamic parameters of electromagnetic macroparticles launcher

  • Author

    Plekhanov, Alexander V.

  • Author_Institution
    Keldysh Inst. of Appl. Math., Moscow, Russia
  • fYear
    2014
  • fDate
    7-11 July 2014
  • Firstpage
    1
  • Lastpage
    5
  • Abstract
    An approach that allows an estimation of the non-ideal thermodynamic plasma parameters of the arc-driven electromagnetic launcher is proposed. Plasma is considered to be incompressible quasi-neutral gas with properties that vary only through the direction of motion. The 2D distribution of the magnetic field in the vicinity of the arc plasma is studied. It is assumed that atoms are once ionized, and electrons, ions, and neutral atoms have the same temperature. The degree of ionization is calculated by Saha equation, and the electrical conductivity of the arc plasma is calculated in the approximation of Spitzer. The resulting system of equations is complemented by the experimental data (current in the circuit of the launcher, the voltage drop at the launcher muzzle, the arc plasma length defined on the basis of B-Dot probe traces). Arc plasma behavior is defined by the parameter of non-ideality and temperature iteratively. The experimental arc plasma length is compared with the arc plasma length calculated by obtained relations. Statistical weights of atoms and ions are determined by interpolation of data given in the table which depend on the pressure and temperature. Processing of experimental data was done to estimate non-ideal arc plasma parameters. It is shown that: 1) at the current density of about 80 kA/cm2 the character of temperature and conductivity dependence on the plasma current density is changed; 2) the electrical conductivity of arc plasma is described by the approximate dependence of σ (T) = σ0 (T/T0)n, where σ0 = 1.556 Ω-1 cm-1; n = 1.988, T0 = 1,000 K.
  • Keywords
    approximation theory; arcs (electric); current density; electrical conductivity; interpolation; ionisation; parameter estimation; plasma thermodynamics; railguns; statistical analysis; weapons; 2D distribution; Saha equation; Spitzer approximation; arc plasma thermodynamic parameters; arc-driven electromagnetic launcher; conductivity dependence; data processing; electrical conductivity; electromagnetic macroparticle launcher; electromagnetic rail launcher; electrons; experimental arc plasma length; incompressible quasineutral gas; ionization; magnetic field; neutral atoms; nonideal thermodynamic plasma parameter estimation; numerical estimation; plasma current density; statistical weights; Conductivity; Current density; Equations; Mathematical model; Plasma temperature; Rails;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electromagnetic Launch Technology (EML), 2014 17th International Symposium on
  • Conference_Location
    La Jolla, CA
  • Type

    conf

  • DOI
    10.1109/EML.2014.6920145
  • Filename
    6920145