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Three-dimensional analysis of a counterweight type space elevator

机译:配重空间电梯的三维分析

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Space elevators studied thus far have been mainly the climber type, in which a cable connects the ground to a space station and the payload is transported by climbers ascending and descending along the cable. However, this type of system has problems, such as the difficulty of supplying energy to climbers and a short lifespan owing to the abrasion of the cable and climber wheels during operation. To avoid these problems, in this study, we investigate a novel counterweight-type space elevator. This system consists of two cables: a guide cable that withstands the tension applied to the structure and a moving cable that connects two gondolas, one at either end of the cable, attaches to a driving wheel in the space station, and transports the payload in the gondolas by driving the wheel. In this study, we analyzed the cable dynamics by using the point mass cable model developed by our group when the counterweight type is applied between the station and the ground, and we calculated the energy necessary for actual operation. As a result, when the counterweight type is applied between the Mars gravity center (altitude 3900 km) and the ground, while the climber type is applied at altitudes above that, the system uses less energy than conventional climber-type space elevators.
机译:研究到目前为止研究的空间电梯主要是登山者类型,其中电缆将地连接到空间站,并且有效载荷通过登山者上升和沿电缆下降来运输。然而,这种类型的系统存在问题,例如在运行期间,由于电缆和登山轮磨损而向登山者提供能量和短暂的寿命。为避免这些问题,在本研究中,我们调查了一个新型配重型空间电梯。该系统由两个电缆组成:引导电缆,承受施加到结构的张力和连接两个缆车的移动电缆,在电缆两端的一个处,连接到空间站的驱动轮,并运输有效载荷通过驱动车轮来吊舱。在这项研究中,我们通过使用我们组开发的点质量电缆模型分析了电缆动态,当站和地之间应用了配重型时,我们计算了实际操作所需的能量。结果,当配重型在火星重力中心(高度3900 km)与地之间时,虽然登山者型在高于上面的高度上施加时,该系统使用比传统的登山者型空间电梯更少的能量。

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