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Precise numerical simulations of electrodynamic tethers for an active debris removal system

机译:主动除杂物系统电动系链的精确数值模拟

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As a countermeasure for suppressing space debris growth, the Institute of Space Technology and Aeronautics, Japan Aerospace Exploration Agency (JAXA), is investigating an active space debris removal system that employs highly efficient electrodynamic tether (EDT) technology as its orbital transfer system. A small, expendable EDT package is under development that consists of a bare conductive tether and field emitter cathodes (FECs) that utilize carbon nanotubes. First, the status of the trial manufacture of the bare tether, reel mechanism, and the FECs are described. Some tests for example for measuring tensile strength and thermal expansion have been conducted on the tether. Next, precise numerical simulations are performed for some aspects of mission analysis, such as available electric currents, orbital changes, tether stability, and deployment dynamics. A tether is modeled as a lumped mass to take into account tether flexibility, and environment models (changes in the plasma density and geomagnetic field, and so on) are also considered. Measured parameters of the manufactured tether described above are reflected in the numerical simulations. Differences between the precise and simple models are compared and discussed.
机译:作为抑制空间碎片增长的对策,日本航空航天局(JAXA)的空间技术与航空研究所正在研究一种主动空间碎片清除系统,该系统采用高效的电动系链(EDT)技术作为其轨道传输系统。正在开发一种小型的,消耗性的EDT封装,该封装由裸露的导电绳和利用碳纳米管的场发射器阴极(FEC)组成。首先,描述了裸绳,卷轴机构和FEC的试制状态。在系绳上进行了一些测试,例如测量拉伸强度和热膨胀。接下来,针对任务分析的某些方面执行精确的数值模拟,例如可用电流,轨道变化,系绳稳定性和部署动态。考虑到系绳的柔韧性,将系绳建模为集总质量,并考虑环境模型(等离子密度和地磁场的变化等)。上述制造的系绳的测量参数反映在数值模拟中。比较和讨论了精确模型和简单模型之间的差异。

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