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Energy and orbital stability in a partially-deployed earth space elevator

机译:部分部署的地球空间电梯中的能量和轨道稳定性

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摘要

The Earth Space Elevator is an ingenious concept aimed at providing easy access to space, eliminating the need for rockets and potentially reducing drastically the launch costs. Technical advancements that could make the Space Elevator possible, among others, would be the availability of long carbon nanotubes or other superstrong and light material. This paper aims at addressing issues related with the stability of the system when the elevator is partially deployed starting from a nucleus in geostationary orbit (GEO). As noted by various authors, the energy increase needed to keep the orbital centre (where the gravity and centrifugal forces balance out) at GEO altitude during deployment while the tether is lengthened leads to an orbit with a positive orbital energy, i.e., the circular orbit has an energy level pertaining to a hyperbolic orbit. This situation leads to the instability of the unanchored system that would tend to escape from the geostationary orbit. The paper illustrates the change in orbital energy during assembly for a system made of a cylindrical tether and then investigate the stability of the coupled orbital and attitude motion in the orbital plane before anchoring. The analysis leads to the conclusion that the orbital motion instability ensues well before the orbital energy of the unperturbed system becomes positive.
机译:地球空间电梯是一种巧妙的概念,旨在提供容易进入空间的概念,消除了对火箭的需求,并且可能潜在地降低发射成本。可以使空间电梯成为可能的技术进步,其中包括长碳纳米管或其他超级和轻质材料的可用性。本文旨在解决与系统从地球静止轨道(Geo)中的核心部分部署的系统稳定性相关的问题。正如各种作者所指出的那样,在展开期间,在展开期间将轨道中心(重力和离心力平衡)保持轨道中心(其在地Geo海拔地区的能量增加,而系绳延长导致具有阳性轨道能量的轨道,即圆形轨道具有与双曲线轨道有关的能级。这种情况导致不稳定的系统,往往逃离地球静止轨道。本文说明了组装过程中的轨道能量的变化,用于圆柱形系绳制成的系统,然后在锚固前调查轨道平面中耦合的轨道和姿态运动的稳定性。分析导致了轨道运动不稳定性在不受干扰的系统的轨道能量变为阳性之前会很好地进行。

著录项

  • 来源
    《Acta astronautica》 |2020年第12期|828-833|共6页
  • 作者单位

    Univ Padua Dept Ind Engn Via Venezia 1 I-35131 Padua Italy;

    Univ Padua Dept Ind Engn Via Venezia 1 I-35131 Padua Italy;

    Univ Padua Ctr Space Studies UniPD CISAS G Colombo CISAS Via Venezia 15 I-35131 Padua Italy;

    Univ Padua Ctr Space Studies UniPD CISAS G Colombo CISAS Via Venezia 15 I-35131 Padua Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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