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Numerical estimation of arc plasma thermodynamic parameters of electromagnetic macroparticles launcher

机译:电磁宏颗粒发射器电弧等离子体热力学参数的数值估计

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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/cm 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) = σ (T/T), where σ = 1.556 Ω cm; n = 1.988, T = 1,000 K.
机译:提出了一种允许估计电弧驱动的电磁发射器的非理想热力学等离子体参数的方法。等离子体被认为是不可压缩的准中性气体,具有仅通过运动方向变化的性质。研究了电弧等离子体附近的磁场的2D分布。假设原子一度是电离的,而电子,离子和中性原子具有相同的温度。电离程度通过Saha方程计算,并且在Spitzer的近似下计算电弧等离子体的电导率。将得到的方程系统是由实验数据补充(在发射器的电路中的电流,在启动器枪口上的电压降,电弧等离子体长度B-点探测迹线的基础上定义的)。电弧等离子体行为由非理想性和温度的参数迭代地定义。将实验电弧等离子体长度与通过获得关系计算的电弧等离子体长度进行比较。原子和离子的统计重量通过依赖于压力和温度的表中给出的数据的内插来确定。进行实验数据的处理以估计非理想的电弧等离子体参数。结果表明:1)在约80ka / cm的电流密度下,温度和电导率对等离子体电流密度的特征变化; 2)通过σ(t)=σ(t / t)的近似依赖性来描述电弧等离子体的电导率,其中σ=1.556Ωcm; n = 1.988,t = 1,000 k。

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