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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Increasing the effective voltage in applied-field MPD thrusters
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Increasing the effective voltage in applied-field MPD thrusters

机译:增加应用领域MPD推进器中的有效电压

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Increasing the effective voltage is proposed to improve applied-field magnetoplasmadynamic thrusters (AF-MPDTs) efficiency. An analytical model for both effective voltage and thrust is presented and discussed on the basis of the generalized Ohm's law. According to such a model, the effective voltage contributes to plasma acceleration and measures can be taken to affect it, including adjusting the fraction of cathode gas injection, applied magnetic field strength and discharge current. In order to verify the model, experiments were conducted on the conditions of stable operation of a 10 kW AF-MPDT. The results showed that discharge current affected thruster efficiency mainly by enhancing the back electromotive effect in plasma acceleration processes. The thrust efficiency was enhanced by an average of 9.1% by raising discharge current from 90 A to 180 A. The fraction of cathode gas injection mainly affected the resistive and Hall effect, and the thrust efficiency was enhanced by an average of 7.3% by increasing the fraction of cathode gas injection from 0.1 to 0.9. The applied magnetic field influenced the thruster performance by enhancing both the resistive and Hall effect and the back electromotive effect. The thrust efficiency was increased by an average of 3.0% by raising the applied magnetic field strength from 0.05 T to 0.17 T. It was found that the plasma acceleration of AF-MPDT was dominated by effective voltage, and increasing the effective voltage was an effective and comprehensive way to improve thruster performance.
机译:提出增加有效电压以改善施加的场磁体上动脉推进器(AF-MPDTS)效率。介绍和讨论了有效电压和推力的分析模型,并在广义欧姆法律的基础上讨论。根据这样的模型,有效电压有助于等离子体加速度,并且可以采取措施来影响其,包括调节阴极气体喷射的分数,施加磁场强度和放电电流。为了验证该模型,在10kW AF-MPDT的稳定运行条件下进行实验。结果表明,放电电流影响推进器效率主要通过增强等离子体加速过程中的反电动势效果。通过将放电电流从90A至180 A升高,平均增强了9.1%的推力效率。阴极气体注入的分数主要影响电阻和霍尔效应,并且通过增加,增强效率增强了7.3%阴极气体注入的分数为0.1至0.9。施加的磁场通过增强电阻和霍尔效应和后电动势来影响推进器性能。通过将施加的磁场强度从0.05 t提高到0.17t的施加磁场强度增加了3.0%的平均值增加了3.0%。发现AF-MPDT的等离子体加速度由有效电压支配,并增加有效电压是有效的全面的方式提高推进器性能。

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