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Dynamical, electrical and thermal coupling in a new class of electrodynamic tethered satellites

机译:新型电动系留卫星中的动态,电和热耦合

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A new class of electrodynamic tethers have been recently introduced which provide comparatively high tether currents with relatively short and light tethers. These space systems make use of a bare tether (anode) to collect electrons from the ionosphere rather than the less efficient, conductive, large spherical termination flown in the past. this new technology, which is suitable for propellantless transportation in the ionosphere, will be demonstrated in August 2000 when the Propulsive Small Expendable Deployment System (ProSEDS) will attempt to deorbit a Delta second stage by using electrodynamic forces. This class of space systems exhibits a strong coupling among the dynamical, electrical, and thermal responses that must be analyzed with computer codes that model the tether continuum dynamics, electrodynamics, and thermal behavior in an integrated manner. After introducing briefly the physics of bare tethers and electron collection from the ionosphere, the paper describes the models adopted to simulate a bare-tether system. Then, it discusses simulation results for selected cases, pertinent to ProSEDS, which show the inter-dependencies among the system parameters. Specifically, the paper shows that key electrical, thermal, and dynamic parameters can strongly affect the decay rate (the most relevant performance index for the system parameters can produce a sustainable electrodynamic drag force capable of increasing, by more than an order of magnitude, the natural decayrate of the Delta stage with a tether mass of only 12 kg and a stabilizing mass of 20 kg.
机译:最近引入了一类新型的电动系绳,该系绳提供了相对较高和较小且较轻的系绳电流。这些空间系统利用裸露的系绳(阳极)来收集电离层中的电子,而不是使用过去效率较低,导电性较大的球形终端。这项适用于电离层无推进剂运输的新技术将在2000年8月进行演示,届时推进式小型消耗性部署系统(ProSEDS)将尝试利用电动势使Delta第二阶段脱离轨道。此类空间系统在动力,电和热响应之间表现出很强的耦合性,必须使用计算机代码进行分析,这些代码以集成方式对系链连续体动力学,电动力学和热行为进行建模。在简要介绍光缆的物理原理和从电离层收集电子之后,本文介绍了用于模拟光缆系统的模型。然后,讨论了与ProSEDS相关的选定案例的仿真结果,这些结果显示了系统参数之间的相互依赖性。具体而言,该论文表明关键的电,热和动态参数会严重影响衰减率(与系统参数最相关的性能指标可以产生可持续的电动阻力,能够将最大的拉力提高一个数量级。系绳质量仅为12 kg,稳定质量为20 kg,是Delta阶段的自然衰减。

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