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Multiphysics Finite Element Modeling of Current Generation of Bare Flexible Electrodynamic Tether

机译:裸露柔性电动系链电流产生的多物理场有限元建模

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摘要

The paper develops a coupled multiphysics finite element method to analyze satellite deorbit by a bare flexible electrodynamic tether. Unlike the existing approaches, the current method assumes that the tether is flexible and deflectable, and its efficiency of electron collection varies along the tether length depending on tether deflection. The orbital motion limited theory, which dictates the electron collection by a bare tether, is discretized and solved with the same finite element mesh as the tether dynamics to couple the electron collection with the tether flexural deflection. The advantages of the new method are demonstrated by numerical simulations. Compared with a reference method based on straight tether assumption, the coupling effect between the electron collection and tether deflection is significant, leading to the dynamic variation of electrodynamic force acting on the tether. Although the deorbit rates predicted by these two methods are almost the same, the new method predicts a shorter stable deorbit period than the reference method. It demonstrates that the new method is more accurate, and it should be used for detailed engineering design.
机译:本文开发了一种耦合的多物理场有限元方法,可以通过裸露的柔性电动系链来分析卫星的离轨。与现有方法不同,当前方法假定系绳是柔性且可偏转的,并且其电子收集效率沿系绳长度的变化取决于系绳的偏转。限定了裸露的系链的电子运动的轨道运动受限理论,通过与系链动力学相同的有限元网格进行离散化和求解,以使电子收集与系链的挠曲挠度耦合。通过数值模拟证明了该新方法的优点。与基于直系绳假设的参考方法相比,电子收集和系绳偏转之间的耦合效果显着,从而导致作用在系绳上的电动势发生动态变化。尽管这两种方法预测的脱轨率几乎相同,但是新方法预测的稳定脱轨周期比参考方法短。它证明了该新方法更准确,应用于详细的工程设计。

著录项

  • 来源
    《Journal of propulsion and power》 |2017年第2期|408-419|共12页
  • 作者

    Gangqiang Li; Zheng H.Zhu;

  • 作者单位

    York University, Toronto, Ontario M3J 1P3, Canada;

    York University, Toronto, Ontario M3J 1P3, Canada;

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  • 正文语种 eng
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