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首页> 外文期刊>Journal of propulsion and power >Scaling of Efficiency with Applied Magnetic Field in Magnetoplasmadynamic Thrusters
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Scaling of Efficiency with Applied Magnetic Field in Magnetoplasmadynamic Thrusters

机译:磁等离子体动力推进器中施加磁场的效率缩放

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An investigation of the scaling of thrust efficiency with the applied magnetic Held hi applied-field magnetoplasmadynamic thrusters is carried out in order to provide guidelines for scaling and controlling applied-field magnetoplasmadynamic thruster performance. Thruster voltage measurements were made at different current, applied-magnetic-field, and mass-flow-rate levels in a 30 kW lithium-fed applied-field magnetoplasmadynamic thruster. The efficiency was then calculated using the voltage data along with a semiempirical thrust formula derived and verified previously for the same thruster. The nonuseful voltage component (the voltage associated with the thruster's power losses) was foupd to scale linearly with the current and applied magnetic field and inversely with the mass flow rate. This behavior was attributed to electrode sheath effects and decreased conductivity with an increasing applied magnetic field. The efficiency was found to increase with the applied magnetic field for all current and mass-flow-rate values, and the enhancement of the efficiency by the applied magnetic field was found to be greater when the mass flow rate was reduced. The observed minimum in the efficiency versus the current curve was related to the Interplay between the components of the thrust and was shown experimentally and analytically to increase with increasing the applied field and decreasing the mass flow rate.
机译:为了对规模和控制应用领域的磁等离子体动力推进器的性能提供指导,对应用磁场Held hi的推力效率的缩放比例进行了研究。推力器电压的测量是在30 kW锂电应用场磁等离子体动力推进器中在不同电流,施加磁场和质量流率水平下进行的。然后,使用电压数据以及先前针对同一推力器推导并验证的半经验推力公式来计算效率。将无用的电压分量(与推进器功率损耗相关的电压)与电流和所施加的磁场成线性比例关系,与质量流量成反比例关系。此行为归因于电极鞘效应和随施加磁场的增加而降低的电导率。对于所有电流值和质量流率值,发现效率都随着施加的磁场而增加,并且当降低质量流率时,发现施加的磁场对效率的增强更大。效率与电流曲线之间观察到的最小值与推力各分量之间的相互作用有关,并且通过实验和分析表明,随着施加磁场的增加和质量流量的减小,最小值会增加。

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