Space tethers: parameters reconstructions and tests

A. Brunello, L. Olivieri, G. Sarego, A. Valmorbida, Enrico Lungavia, E. Lorenzini
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引用次数: 2

Abstract

In the last several years, the need for an alternative to chemical propulsive systems for low-orbit satellite deorbiting has become increasingly evident; a Tethered System can provide adequate thrust or drag without the complications of combustions and with a minimal impact on the environment. In this context, the authors are part of a team that is studying various tether applications and building a prototype of an electrodynamic tether system. The goal of this paper is to characterize tether materials in order to find valid solutions for future space tether missions. Mission requirements (e.g., the survivability to hypervelocity impacts and the capability to damp oscillations in electrodynamic tethers) influence the choice of tether parameters such as cross section geometry (round wires or tapes), materials, length, and cross section sizes. The determination of the elastic characteristics and damping coefficients is carried out through a campaign of experiments conducted with both direct stress/strain measurements and the laboratory facility SPAcecRraft Testbed for Autonomous proximity operatioNs experimentS (SPARTANS) on a low friction table at the University of Padova. In the latter case, the stiffness and damping of a flexible line were verified by applying different tensile load profiles and then measuring the tether-line dynamic response in terms of tension spike amplitude, oscillation decay, and estimation of the damping coefficient.
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空间缆绳:参数重建和测试
在过去几年中,越来越明显地需要一种替代化学推进系统的低轨道卫星脱离轨道;系留系统可以提供足够的推力或阻力,而不会产生燃烧的并发症,并且对环境的影响最小。在这种情况下,作者是一个团队的一部分,该团队正在研究各种系绳的应用,并建立一个电动系绳系统的原型。本文的目的是表征系绳材料,以便为未来的空间系绳任务找到有效的解决方案。任务要求(例如,超高速撞击的生存能力和抑制电动系绳振荡的能力)影响系绳参数的选择,如截面几何形状(圆线或胶带)、材料、长度和截面尺寸。弹性特性和阻尼系数的确定是通过直接应力/应变测量和实验室设施航天器自主接近操作实验试验台(SPARTANS)在帕多瓦大学的低摩擦台上进行的一系列实验来进行的。在后一种情况下,通过施加不同的拉伸载荷剖面,然后根据张力峰值幅度、振荡衰减和阻尼系数估计测量系绳的动态响应,验证了柔性线的刚度和阻尼。
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