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首页> 外文期刊>Energies >Particle Simulation Model for Self-Field Magnetoplasmadynamic Thruster
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Particle Simulation Model for Self-Field Magnetoplasmadynamic Thruster

机译:自磁场磁等离子体动力推进器的粒子模拟模型

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In order to clarify the discharge principle of the self-field magnetoplasmadynamic thruster (MPDT), a two-dimensional axisymmetric particle-in-cell/Monte Carlo collision (PIC/MCC) model is proposed. The spatial distribution and the collision characteristics of discharge plasma were calculated using this model. In addition, the influence of the operation parameters on the plasma was analyzed including the voltage and mass flow rate. The effectiveness of the model was verified by comparison to the experimentally induced magnetic field. It was found that the electrons were mainly accelerated by the electric field in the cathode sheath and the electric field shielding effect of plasma was obvious in the bulk plasma region. Due to the pinch effect, the charged particles were constrained near the cathode. The results of the present work implied that the PIC/MCC model provides an approach to investigate the plasma distribution and a kinetic description of particles for the discharge of the self-field MPDT.
机译:为了阐明自磁场磁等离子体动力推进器(MPDT)的放电原理,提出了二维轴对称单元内/蒙特卡洛碰撞(PIC / MCC)模型。使用该模型计算了放电等离子体的空间分布和碰撞特性。另外,分析了操作参数对等离子体的影响,包括电压和质量流率。通过与实验感应磁场进行比较,验证了模型的有效性。发现电子主要被阴极鞘层中的电场所加速,并且等离子体的电场屏蔽效应在体等离子体区域中是明显的。由于收缩效应,带电粒子被约束在阴极附近。本工作的结果表明,PIC / MCC模型提供了一种方法,用于研究等离子体分布和用于自电场MPDT放电的粒子动力学描述。

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