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CONTINUOUS EARTH-MOON PAYLOAD EXCHANGE USING MOTORISED MOMENTUM EXCHANGE TETHERS

机译:使用动量动量交换法进行连续的月球有效载荷交换

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To benefit from the abundance of resources available at the Moon's surface; a permanent lunar base must be established which has the capability of extracting these resources in conjunction with an economical means for their return to Earth. Replenishment of any resources required by the base must also be accomplished. However, at present, conventional chemical propulsion systems do not satisfy these economic constraints. Hybrid systems consisting of symmetrically laden motorised momentum exchange tethers and conventional chemical propulsion are capable of replacing the sole use of chemical propulsion at reduced fuel expenditure. The exchange of payloads between the Earth and the Moon occurs at the ascending and descending nodes of the Moon's orbit about Earth and by utilising a combination of precise logistical arrangement and trajectory design allows a continuous exchange of payloads between the Earth and the Moon to be accomplished. The advantages of the system are; a reduction in fuel expenditure in comparison with the exclusive use of chemical propulsion and the frequency of exchange opportunities available. Adaptations to the system may provide configurations suitable for exchanges between the Earth and Mars or the Earth and Near Earth Objects, NEOs.
机译:受益于月球表面的丰富资源;必须建立一个永久性的月球基地,该基地具有提取这些资源的能力以及结合其返回地球的经济手段。还必须完成基地所需资源的补充。然而,目前,常规化学推进系统不能满足这些经济限制。由对称负载的机动动量交换系绳和常规化学推进器组成的混合动力系统能够以减少的燃料消耗取代仅使用化学推进器的情况。地球与月球之间的有效载荷交换发生在月球绕地球轨道的上升和下降节点处,并且通过结合精确的后勤安排和轨迹设计,可以实现地球与月球之间的有效载荷连续交换。该系统的优点是;与仅使用化学推进器和可利用的交换机会相比,减少了燃料支出。对系统的适应可以提供适合于在地球与火星或地球与近地物体NEO之间交换的配置。

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