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- W2153602180 abstract "A particle and energy balance model of orificed hollow cathodes was developed to assist in cathode design. The model presented here is an ensemble of original work by the author and previous work by others. The processes in the orifice region are considered to be one of the primary drivers in determining cathode performance, since the current density was greatest in this volume (up to 1.6 x 10(exp 8) A/m2). The orifice model contains comparatively few free parameters, and its results are used to bound the free parameters for the insert model. Next, the insert region model is presented. The sensitivity of the results to the free parameters is assessed, and variation of the free parameters in the orifice dominates the calculated power consumption and plasma properties. The model predictions are compared to data from a low-current orificed hollow cathode. The predicted power consumption exceeds the experimental results. Estimates of the plasma properties in the insert region overlap Langmuir probe data, and the predicted orifice plasma suggests the presence of one or more double layers. Finally, the model is used to examine the operation of higher current cathodes." @default.
- W2153602180 created "2016-06-24" @default.
- W2153602180 creator A5076551082 @default.
- W2153602180 date "2002-07-07" @default.
- W2153602180 modified "2023-10-16" @default.
- W2153602180 title "A Particle and Energy Balance Model of the Orificed Hollow Cathode" @default.
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- W2153602180 doi "https://doi.org/10.2514/6.2002-4240" @default.
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