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首页> 外文期刊>Plasma Science, IEEE Transactions on >Application of AF-NUMIT2 to the Modeling of Deep-Dielectric Spacecraft Charging in the Space Environment
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Application of AF-NUMIT2 to the Modeling of Deep-Dielectric Spacecraft Charging in the Space Environment

机译:AF-NUMIT2在空间环境中深介电航天器充电建模中的应用

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摘要

A 1-D numerical iteration software tool (NUMIT) designed for laboratory modeling has been refined, developed, and greatly enhanced, so that it can be used to model and predict the deep charging of dielectrics on spacecraft. The new tool, called Air Force NUMIT version 2 (AF-NUMIT2), can now model isotropically incident electron fluxes from realistic energy spectra that change with time. The model has been extended to incident electron fluxes an order of magnitude lower than before (≥10 keV), and aspects of the model have been checked against Monte Carlo simulations. Electron energy flux spectra, as measured by Combined Release and Radiation Effects Satellite, have been used in dozens of simulations of Kapton charging over multiple days. Kapton has been modeled with both dark conductivities and radiation-induced conductivities extending over two orders-of-magnitude. The result has been a surprisingly consistent relationship between maximum internal electric-field strengths and conductivity, regardless of the particular incident electron spectra.
机译:为实验室建模而设计的一维数值迭代软件工具(NUMIT)已得到改进,开发和大大增强,因此可用于建模和预测航天器上电介质的深层电荷。新工具称为空军NUMIT版本2(AF-NUMIT2),现在可以根据随时间变化的真实能谱对各向同性入射的电子通量进行建模。该模型已扩展到入射电子通量,比以前降低了一个数量级(≥10 keV),并且已针对蒙特卡洛模拟对模型的各个方面进行了检查。电子能量通量谱(由联合释放和辐射效应卫星测量)已用于多天的Kapton充电的数十次模拟中。对Kapton进行建模时,其暗电导率和辐射感应电导率均超过两个数量级。结果是,无论特定的入射电子光谱如何,最大内部电场强度与电导率之间的关系都出乎意料地一致。

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