首页> 外文会议>Electromagnetic Compatibility Symposium Record, 1968 IEEE >Partial experimental checking of theoretical predictions on time dependent electrical conductivity of the secondary plasma created in atmosphere by a high power electron beam
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Partial experimental checking of theoretical predictions on time dependent electrical conductivity of the secondary plasma created in atmosphere by a high power electron beam

机译:对大功率电子束在大气中产生的次级等离子体随时间变化的电导率的理论预测的部分实验检验

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The key role played by secondary plasma electrical conductivity in stability of a high power electron beam propagating in gaseous atmosphere,is well-known. For a long time, in theoretical models, this parameter has been considered as a given space and time constant or, at best, as a time constant possessing a radial dependence: σ(r). Recent calculations have shown the very important stabilizing effect of the rapid time variation of σ, as the secondary plasma is progressively created, cooled or heated. The theoretical and numerical model PEGASE gives access to σ(r,z,t). It is a 2D, axisymmetric, multifluid (e, N+2, N+, N, N*,‥) model based on macroscopic equations of continuity -including a detailed air chemistry-, motion and energy, closed by the full set of Maxwell equations. A partial experimental check has been performed at the C.E.A.-D.A.M. Valduc Research Center, on the EUPHROSYNE facility, with a 1.7 MeV, 40 kA, 2.5 cm diameter, 75 ns electron beam, propagating in nitrogen at a variable pressure. The measured net current has been compared to predictions of a circuit model including the time dependent electrical resistance of the secondary plasma column. The agreement is highly satisfactory.
机译:众所周知,次级等离子体电导率在气体中传播的高功率电子束的稳定性中起着关键作用。长期以来,在理论模型中,此参数一直被视为给定的空间和时间常数,或者至多被视为具有径向依赖性的时间常数:σ(r)。最近的计算表明,随着次级等离子体的逐渐形成,冷却或加热,σ的快速时间变化具有非常重要的稳定作用。理论模型和数值模型PEGASE可以访问σ(r,z,t)。它是基于宏观连续性方程的2D轴对称多流体模型(e,N + 2,N + ,N,N *,model)-包括详细的空气化学,运动和能量,由全套麦克斯韦方程式封闭。已在C.E.A.-D.A.M.进行了部分实验检查。位于EUPHROSYNE设施的Valduc研究中心,具有1.7 MeV,40 kA,2.5 cm直径,75 ns电子束,在可变压力下在氮气中传播。已将测得的净电流与电路模型的预测进行比较,该电路模型包括次级等离子体柱的时间相关电阻。该协议令人非常满意。

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