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Swamp Works - A New Approach to Develop Space Mining and Resource Extraction Technologies at NASA's Kennedy Space Center: Prospecting, Excavation, Load, Haul and Dump forIn Situ Resource Utilisation

机译:沼泽作品 - 一种在美国宇航局肯尼迪航天中心开发太空矿业和资源开采技术的新方法:勘探,挖掘,负载,运输和转储原位资源利用率

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The first steps for in situ resource utilisation (ISRU) on target bodies such as the Moon, Mars and near-Earth asteroids (NEA), and even comets, involve the same sequence of steps as in the terrestrial mining of resources. First exploration including prospecting must occur, and then the resource must be acquired through excavation methods if it is of value. Subsequently a load-haul-dump sequence of events occurs, followed by processing of the resource in an ISRU plant, to produce useful commodities.While these technologies and related supporting operations are mature in terrestrial applications, they will be different in space since the environment and indigenous materials are different than on Earth. In addition, the equipment must be highly automated, since for the majority of the production cycle time, there will be no humans present to assist or intervene. This space mining equipment must withstand a harsh environment which includes vacuum, radical temperature swing cycles, highly abrasive lofted dust, electrostatic effects, van der Waals forces effects, galactic cosmic radiation, solar particle events, high thermal gradients when spanning sunlight terminators, steep slopes into craters / lava tubes and cryogenic temperatures as low as 40 K in permanently shadowed regions. In addition the equipment must be tele-operated from Earth or a local base where the crew is sheltered. If the tele-operation occurs from Earth then significant communications latency effects mandate the use of autonomous control systems in the mining equipment. While this is an extremely challenging engineering design scenario, it is also an opportunity, since the technologies developed in this endeavour could be used in the next generations of terrestrial mining equipment, in order to mine deeper, safer, more economical and with a higher degree of flexibility. New space technologies could precipitate new mining solutions here on Earth.The NASA Kennedy Space Center (KSC) Swamp Works is an innovation environment and methodology, with associated laboratories that use lean development methods and creativity-enhancing processes to invent and develop new solutions for space exploration. This paper will discuss the Swamp Works approach to developing space mining and resource extraction systems and the vision of space development it serves. The ultimate goal of the Swamp Works is to expand human civilisation into the solar system via the use of local resources utilisation. By mining and using the local resources in situ, it is conceivable that one day the logistics supply train from Earth can be eliminated and Earth independence of a space-based community will be enabled.
机译:在诸如月球,火星和近地区小行星(NEA)和甚至彗星等目标体上的第一步,如月球,火星和近地区小行星(NEA),甚至涉及与资源的地面挖掘相同的步骤序列。第一次探索,包括勘探,然后,如果值为价值,则必须通过挖掘方法获取资源。随后发生了加载的事件序列,然后进行ISRU工厂中的资源,以产生有用的商品。当这些技术和相关的支持操作在陆地应用中成熟,自环境以来的太空将是不同的土着材料与地球不同。此外,该设备必须高度自动化,因为对于大多数生产周期时间,没有人类提供帮助或干预。该空间采矿设备必须承受苛刻的环境,包括真空,自由基温度摆动循环,高磨料的倾斜灰尘,静电效应,van der wa效应,银河宇宙辐射,太阳能粒子事件,高热梯度跨越阳光终端,陡坡在永久阴影区域中进入陨石坑/熔岩管和低至40 k的低温温度。此外,设备必须远离地球或船员庇护的当地基地。如果远程操作发生在地球中,则重大通信延迟效应要求在采矿设备中使用自主控制系统。虽然这是一个极具挑战性的工程设计情景,但它也是一个机会,因为在这一努力中开发的技术可以在下一代的地面采矿设备中使用,以便深入,更安全,更经济,更高的程度灵活性。新的空间技术可能会在地球上促使新的采矿解决方案。美国宇航局肯尼迪航天中心(KSC)沼泽作品是一种创新环境和方法,具有利用精益开发方法和创造性增强流程来发明和开发新的空间解决方案的相关实验室勘探。本文将讨论沼泽工程方面发展太空挖掘和资源提取系统以及它所服务的空间开发的视野。沼泽作用的最终目标是通过使用当地资源利用来扩展人类文明进入太阳系。通过挖掘和使用本地资源原位,可以想到,有一天可以消除来自地球的物流供应火车,并将启用基于空间的社区的地球独立性。

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