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An aerostable drag-sail device for the deorbit and disposal of sub-tonne, low earth orbit spacecraft

机译:一种用于亚吨位低地球轨道航天器的脱轨和处置的气溶式拖曳装置

摘要

There is an increasing amount of debris in low Earth orbit arising from the disintegration and collision of old spacecraft which have not been removed from orbit. A ‘bolt-on’ deorbit device to be attached to new spacecraft is therefore proposed, which would deploy an aerostable drag sail at end-of-life. This drag sail would interact with the rarefied atmospheric gases and plasma present at altitudes of up to 1,000 km and thus denude energy from the orbit, causing it to become lower and lower until final re-entry of the host becomes inevitable. At this point the drag sail would collapse and both the host and the deorbit device would be destroyed by aerothermodynamic forces. This work develops the deorbit device concept by demonstrating that aerostable drag enhancement is an effective and competitive deorbit mechanism. This is done by: • Calculating the aerodynamic, solar radiation pressure and gravitational influences on the deployed drag sail and using them to model the performance of the device. • Using the results of that modelling to identify the optimum shape, size and deployment conditions of the drag sail. • Further calculating the structural strength required to resist the aerodynamic loads until the desired collapse altitude. • And finally by using that information to assemble a conceptual design which demonstrates the practicability of the system.
机译:由于尚未从轨道移出的旧航天器的崩解和碰撞,低地球轨道上的碎片不断增加。因此,提出了一种“螺栓固定”的去轨装置,该装置将被连接到新的航天器上,该装置将在寿命终止时部署一个可充气的风帆。该风帆将与高度不超过1000 km的稀有大气气体和等离子相互作用,从而剥夺轨道上的能量,导致其变得越来越低,直到最终无法进入宿主为止。在这一点上,阻力帆将崩溃,并且主机和去轨装置都将被空气热力学力破坏。这项工作通过证明气动稳定的阻力增强是一种有效的竞争性的脱轨机制,从而发展了脱轨装置的概念。这可以通过以下方法完成:•计算对展开的风帆的空气动力学,太阳辐射压力和重力影响,并使用它们对设备的性能进行建模。 •使用建模结果确定拖曳帆的最佳形状,尺寸和展开条件。 •进一步计算抵抗空气动力载荷直至所需的坍塌高度所需的结构强度。 •最后,通过使用这些信息来组装概念设计,以证明系统的实用性。

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