Numerical suite for the design, simulation and optimization of cathode-less plasma thrusters

N. Souhair
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Abstract

Abstract. A numerical suite developed for the analysis and design of cathodeless plasma thrusters is presented. The suite includes a Global Model that estimates the thruster's propulsive performance by means of a balance of electron energy and population density, and a 3D numerical strategy to assess plasma behavior. The suite incorporates a FLUID and EM modules to solve plasma transport and electromagnetic wave propagation within the discharge chamber. The PLUME module, managed by the Starfish code, handles plasma dynamics in the magnetic nozzle using the electrostatic particle-in-cell approach. The suite has been validated against thrust measurements from a Helicon Plasma Thruster demonstrating the suite's potential for optimizing the design and operation of cathodeless plasma thrusters for space propulsion applications.
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无阴极等离子体推力器的设计、模拟和优化数值套件
摘要介绍了一套用于分析和设计无阴极等离子体推力器的数值计算程序。该套件包括一个全局模型,通过平衡电子能量和人口密度来估计推进器的推进性能,以及一个3D数值策略来评估等离子体的行为。该套件包含一个流体和EM模块,以解决放电室内的等离子体传输和电磁波传播问题。PLUME模块由Starfish代码管理,使用静电粒子池方法处理磁喷嘴中的等离子体动力学。该套件已经通过Helicon等离子体推力器的推力测量验证,证明了该套件在优化空间推进应用的阴极等离子体推力器的设计和运行方面的潜力。
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