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The orbital mechanics of space elevator launch systems

机译:太空电梯发射系统的轨道机制

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The construction of a space elevator would be an inspiring feat of planetary engineering of immense cost and risk. But would the benefit outweigh the costs and risks? What, precisely, is the purpose for building such a structure? For example, what if the space elevator could provide propellant-free (free release) orbital transfer to every planet in the solar system and beyond on a daily basis? In our view, this benefit might outweigh the costs and risks. But can a space elevator provide such a service? In this manuscript, we examine 3 tiers of space elevator launch system design and provide a detailed mathematical analysis of the orbital mechanics of spacecraft utilizing such designs. We find the limiting factor in all designs is the problem of transition to the ecliptic plane. For Tiers 1 and 2, we find that free release transfers to all the outer planets is possible, achieving velocities far beyond the ability of current Earth-based rocket technology, but with significant gaps in coverage due to planetary alignment. For Tier 3 elevators, however, we find that fast free release transfers to all planets in the solar system are possible on a daily basis. Finally, we show that Tier 2 and 3 space elevators can potentially use counterweights to perform staged slingshot maneuvers, providing a velocity multiplier which could dramatically reduce transit times to outer planets and interstellar destinations.
机译:空间电梯的建造将是行星工程的鼓舞人身的巨大成本和风险。但福利会超过成本和风险吗?什么,精确地是建立这种结构的目的?例如,如果空间电梯可以向太阳系中的每个行星提供直接的(自由释放)轨道转移,以及每天的地行星何时何地呢?在我们看来,这种福利可能超过了成本和风险。但是一个空间电梯可以提供这样的服务吗?在这个手稿中,我们检查了3层的空间电梯发射系统设计,并提供了利用这种设计的宇宙飞船轨道机制的详细数学分析。我们发现所有设计中的限制因素都是过渡到黄道平面的问题。对于Tirier 1和2,我们发现对所有外部行星的自由释放转移是可能的,实现远远超出了当前基于地球火箭技术的能力的速度,而是由于行星对准导致的覆盖范围内的显着差距。然而,对于第3层电梯,我们发现每天都可以获得到太阳系中所有行星的快速释放转移。最后,我们展示了第2层和3个空间电梯可以使用配重来执行分阶段的弹弓演动,提供速度乘法器,其可以显着减少到外行星和星际目的地的运输时间。

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