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Logistics Needs for Potential Deep Space Mission Scenarios Post Asteroid Redirect Crewed Mission

机译:小行星重定向机组人员任务后潜在的深空任务场景的后勤需求

摘要

The Asteroid Redirect Mission (ARM) is currently being explored as the next step towards deep space human exploration, with the ultimate goal of reaching Mars. NASA is currently investigating a number of potential human exploration missions, which will progressively increase the distance and duration that humans spend away from Earth. Missions include extended human exploration in cis-lunar space which, as conceived, would involve durations of around 60 days, and human missions to Mars, which are anticipated to be as long as 1000 days. The amount of logistics required to keep the crew alive and healthy for these missions is significant. It is therefore important that the design and planning for these missions include accurate estimates of logistics requirements. This paper provides a description of a process and calculations used to estimate mass and volume requirements for crew logistics, including consumables, such as food, personal items, gasses, and liquids. Determination of logistics requirements is based on crew size, mission duration, and the degree of closure of the environmental control life support system (ECLSS). Details are provided on the consumption rates for different types of logistics and how those rates were established. Results for potential mission scenarios are presented, including a breakdown of mass and volume drivers. Opportunities for mass and volume reduction are identified, along with potential threats that could possibly increase requirements.
机译:目前正在探索小行星重定向任务(ARM),这是迈向深空人类探索的下一步,其最终目标是到达火星。 NASA目前正在研究许多潜在的人类探索任务,这些任务将逐步增加人类在地球上度过的距离和持续时间。任务包括扩大人类在顺月空间的探索,预计将持续60天左右,对人类进行的火星任务预计将长达1000天。为使这些任务保持机组人员的生命和健康所需的后勤工作量很大。因此,重要的是,这些任务的设计和计划应包括对后勤需求的准确估计。本文提供了一种过程和计算方法的描述,这些过程和计算方法用于估算人员后勤的质量和体积要求,包括食品,个人物品,气体和液体等消耗品。后勤需求的确定是基于机组人员人数,任务期限和环境控制生命支持系统(ECLSS)的关闭程度。提供了有关不同类型物流的消耗率以及如何确定这些消耗率的详细信息。列出了潜在任务情景的结果,包括质量和数量驱动因素的细分。确定了减少质量和体积的机会,以及可能增加需求的潜在威胁。

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