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Elementary Scaling Relations for Hall Effect Thrusters

机译:霍尔效应推进器的基本比例关系

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Various sizing methodologies are currently available to get a first estimate of the required Hall effect thruster dimensions for a given input power and a corresponding thrust and specific impulse level. In this work, a semi-empirical approach to compute the three characteristic thruster dimensions, i.e., the channel length, the channel width, and the channel mean diameter, is introduced. The magnetic field strength is also considered. The determination of the scaling relations is based on analytical relationships deduced from the physical mechanisms that govern the properties of a Hall thruster discharge. A set of simplifying assumptions naturally specifies the validity domain of the relationships. The existence of a critical propellant atom density inside the channel, which warrants a high-efficiency thruster operation, is revealed and commented. The proportionality coefficients of the scaling relations are assessed by way of a vast database that comprises 33 single-stage Hall effect thrusters covering a power range from 10 W up to 50 kW. The sizing method is employed to access the geometry and the operating parameters for a 20 kW-class Hall thruster operating with xenon. Results obtained with two different series of simplifying assumptions are compared. The first set forms a very restrictive frame. The second set offers a more realistic description of the physics at work as the electron temperature, the energy losses and multiply charged ion species are taken into account.
机译:当前可以使用各种尺寸确定方法来获得给定输入功率以及相应推力和特定脉冲水平所需的霍尔效应推进器尺寸的第一估算值。在这项工作中,引入了一种半经验方法来计算三个特征推进器尺寸,即通道长度,通道宽度和通道平均直径。还考虑了磁场强度。比例关系的确定基于从控制霍尔推进器排放物特性的物理机制推导出的分析关系。一组简化的假设自然会指定关系的有效性域。揭示并评论了通道内部存在的临界推进剂原子密度,该密度可确保高效推进器操作。比例关系的比例系数通过一个庞大的数据库进行评估,该数据库包括33个单级霍尔效应推进器,功率范围从10 W到50 kW。使用定径方法来访问使用氙气运行的20 kW级霍尔推力器的几何形状和运行参数。比较使用两个不同系列的简化假设获得的结果。第一组形成非常严格的框架。考虑到电子温度,能量损失和多电荷离子种类,第二组对工作中的物理学提供了更现实的描述。

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