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SLING-ON-A-RING: A REALIZABLE SPACE ELEVATOR TO LEO?

机译:SRING-ON-A-RING:LEO的可实现空间提升者?

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In this paper, we propose a new concept of a rotovator based space elevator system called "sling-on-a-ring ?". The system would consist of a high-tensile-strength equatorial circum-terra conductive fiber, associated solar-power and station-keeping units and a rotating sling module. The long sling assembly would rotate through the ring-bound mass-lifter module and would periodically descend into the atmosphere (13 km). The system would be adjusted so that at perigee, when the sling penetrates into the atmosphere, the rotational tip velocity of the sling end would almost cancel out the orbital velocity of the circum-terra ring relative to the earth's surface. With split-second timing, the payload would be attached from an ordinary aircraft (at as low as _40000 feet) and jerked into space by the momentum of the sling. An improved version of the system (2-stage sling system) and man-rating aspects have also been discussed in the paper. Through the paper, it is intended to establish that with the availability of stronger materials, the improved version of the proposed system would be comparable to the HASTOL (in terms of tether-to-payload mass ratio), eliminating the need for hypersonic airplanes.
机译:在本文中,我们提出了一种基于旋转器的太空电梯系统的新概念,称为“环上吊索?”。该系统将由高强度的赤道环地导电纤维,相关的太阳能和站位保持单元以及旋转吊索模块组成。长吊索组件将旋转通过绑定环的质量提升器模块,并会定期下降到大气中(13公里)。将对该系统进行调整,以使在近地点,当吊索渗透到大气中时,吊索端部的旋转尖端速度将几乎抵消环绕环相对于地球表面的轨道速度。在瞬间计时下,有效载荷将从一架普通飞机(低至_40000英尺)处附着,并因吊索的动量而突入太空。本文还讨论了系统的改进版本(两级吊索系统)和评估方面。通过本文,我们可以确定,在可获得更坚固的材料的情况下,所提议系统的改进版本将与HASTOL相当(就绳索与有效载荷的质量比而言),从而无需使用超音速飞机。

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