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首页> 外文期刊>Journal of propulsion and power >Numerical Study of Plasma Behavior in a Magnetoplasmadynamic Thruster Around Critical Current
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Numerical Study of Plasma Behavior in a Magnetoplasmadynamic Thruster Around Critical Current

机译:临界电流附近的磁等离子体动力推进器中等离子体行为的数值研究

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摘要

A self-field magnetoplasmadynamic thruster is numerically studied for an argon mass flow rate of 0.8 g/s. We focus on the plasma behavior around the critical current, at which full propellant ionization is theoretically expected. At a discharge current higher than the critical current, the Hall parameter is large at the anode surface, which leads to an obliquely skewed current profile. This skewed current profile, together with the voltage-current characteristics, show that the Hall effect plays an important role around the critical current. When operating the magnetoplasmadynamic thruster above the critical current, it is shown that the current concentration and the gas density depletion at the anode edge induce a shortage of current carriers. To circumvent the carrier shortage at high discharge currents, we employ a segmented anode. It is found that a segmented anode is effective for suppressing the current concentration and the plasma density depletion on the anode surface without degrading the performance of the thruster.
机译:对氩气质量流量为0.8 g / s的自磁场磁等离子体动力推进器进行了数值研究。我们将重点放在临界电流附近的等离子体行为上,在理论上这是期望完全推进剂电离的条件。在高于临界电流的放电电流下,霍尔参数在阳极表面处较大,这会导致电流曲线倾斜。这种偏斜的电流曲线以及电压-电流特性表明,霍尔效应在临界电流附近起着重要作用。当在极限电流以上操作磁等离子体动力推进器时,显示出阳极边缘处的电流浓度和气体密度耗尽会引起载流子短缺。为了避免高放电电流下的载流子短缺,我们采用了分段阳极。发现分段的阳极对于抑制电流浓度和在阳极表面上的等离子体密度耗尽而不降低推进器的性能是有效的。

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