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首页> 外文期刊>Journal of Spacecraft and Rockets >Design of Tether Sling for Human Transportation Systems Between Earth and Mars
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Design of Tether Sling for Human Transportation Systems Between Earth and Mars

机译:地球与火星之间人类运输系统的系绳吊索设计

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摘要

Human transportation systems between Earth and Mars might benefit greatly from the construction of a tether sling facility on Phobos. A tether sh'ng has the potential to launch vehicles from Phobos to Earth with little or no propellant expended because it is solar powered. For current trajectory designs and tether materials, we show that a tether sling facility is superior to chemical propulsion systems when multiple launches from Phobos are considered. A performance index of the ratio of tether mass to chemical-propellant mass is used to compare various mission scenarios. Ratios less than 10 are considered desirable. The most advantageous application of the tether sling occurs during a Hohmann transfer from Phobos to Earth where the mass ratio is 1.8. Next are semicyclers (ratios of 1.9 and 2.4) and a three-synodic-period cycler (8.7). Unfortunately, the Aldrin cycler does not benefit from the tether sling because the high hyperbolic velocity at Mars drives the mass ratio to infinity. For cases with desirable mass ratios, we also account for fluctuations in the cross section of the tether as a result of manufacturing uncertainties.
机译:地球与火星之间的人类运输系统可能会从Phobos上的系绳吊索设施建设中受益匪浅。系绳炸弹有潜力将飞船从火卫一发射到地球,而推进剂很少或没有消耗,因为它是太阳能驱动的。对于当前的轨迹设计和系绳材料,我们显示,当考虑从火卫一发射时,系绳吊索设施优于化学推进系统。系绳质量与化学推进剂质量之比的性能指标用于比较各种任务场景。比率小于10被认为是理想的。系绳吊索的最有利应用是在霍曼从火卫一转移到地球的质量比率为1.8的过程中发生的。接下来是半骑自行车者(比值为1.9和2.4)和一个三周期骑自行车者(8.7)。不幸的是,Aldrin循环器无法从系绳带中受益,因为火星上的高双曲线速度将质量比推向无穷大。对于具有理想质量比的情况,我们还考虑了由于制造不确定性而导致的系链横截面波动。

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