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Inductive Pulsed Plasma Thruster Model with Time-Evolution of Energy and State Properties

机译:具有能量和状态特性时间演化的感应脉冲等离子推进器模型

摘要

A model for pulsed inductive plasma acceleration is presented that consists of a set of circuit equations coupled to both a one-dimensional equation of motion and an equation governing the partitioning of energy. The latter two equations are obtained for the plasma current sheet by treating it as a single element of finite volume and integrating the governing equations over that volume. The integrated terms are replaced where necessary by physically-equivalent quantities that are calculated through the solution of other parts of the governing equation set. The model improves upon previous one-dimensional performance models by permitting the time-evolution of the energy and state properties of the plasma, the latter allowing for the tailoring of the model to different gases that may be chosen as propellants. The time evolution of the various energy modes in the system and the associated plasma properties, calculated for argon propellant, are presented to demonstrate the efficacy of the model. The model produces a result where efficiency is maximized at a given value of the electrodynamic scaling term known as the dynamic impedance parameter. Qualitatively and quantitatively, the model compares favorably with performance measured for two separate inductive pulsed plasma thrusters, with disagreements attributable to simplifying assumptions employed in the generation of the model solution.
机译:提出了一种用于脉冲感应等离子体加速的模型,该模型由与一维运动方程和控制能量分配的方程耦合的一组电路方程组成。通过将等离子体电流表视为有限体积的单个元素并将该体积上的控制方程积分,可以得到后两个方程。必要时,可以通过通过控制方程组其他部分的解计算得出的物理等效量来代替积分项。该模型通过允许等离子体的能量和状态特性随时间演化而对先前的一维性能模型进行了改进,后者使模型可以适应可能被选择为推进剂的不同气体。给出了系统中各种能量模式的时间演化以及为氩气推进剂计算的相关等离子体特性,以证明该模型的有效性。该模型产生的结果是,在给定的电动定标项值(称为动态阻抗参数)下,效率最大化。定性和定量地,该模型与两个独立的感应式脉冲等离子推进器的测量性能相比具有优势,但由于简化了模型解决方案的生成而产生的分歧。

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