首页> 外文会议>Space Technology and Applications Internation Forum >ISRU Development Strategy and Recent Activities to Support Near and Far Term Missions
【24h】

ISRU Development Strategy and Recent Activities to Support Near and Far Term Missions

机译:ISRU开发战略和最近支持附近和远期任务的活动

获取原文

摘要

The practical expansion of humans beyond low Earth orbit into near-Earth space and out into the solar system for exploration, commercialization, tourism, and colonization will require the effective utilization of whatever indigenous resources are available to make these endeavors economically feasible and capable of extended operations. This concept of "living off the land" is called In-Situ Resource Utilization (ISRU). The resources available for ISRU applications vary widely, depending upon the location. However, there are resources, technologies, and processes that are common to multiple destinations and ISRU-related applications. These resources range from carbon dioxide (CO_2) and water vapor found in human habitats (surface & spacecraft) and in the Martian atmosphere, to water (ice and hydrated minerals) and various oxygen, carbon, and metal-bearing resources found on comets and asteroids, and in planetary surface materials at numerous destinations of interest (Moon, Mars, Titan, and Europa). Many parties are investigating the common technologies and processes to effectively extract and use these resources. This paper will discuss how ISRU is enabling for both near and far term human exploration missions, and present a summary of recent and on-going ISRU work sponsored by the NASA/Johnson Space Center. Technology development activities that will be described in detail include an advanced CO_2 freezer acquisition system, a multi-fluid common bulkhead cryogenic storage tank, and a variety of microchannel chemical reactor concepts. Recent advanced Sabatier reactor concept development activities in preparation for later, end-to-end system testing will be described as well. This paper will also discuss an ISRU-based strategy to enable extensive robotic and human surface exploration operations and a related on-going demonstration program for a fuel cell based power plant for rover applications. Technology commonalities between ISRU, life support systems, and Extra Vehicular Activity (EVA), applications will also be presented.
机译:超越低地球轨道人类送入近地空间和出的实际扩展到勘探,商业,旅游,和殖民太阳系需要的任何本土资源,以使这些努力在经济上是可行的,并能扩展的有效利用操作。 “活过的土地”这个概念被称为原位资源利用(ISRU)。可供ISRU应用程序的资源有很大的不同,这取决于位置。不过,也有通用于多个目的地和ISRU相关的应用资源,技术和工艺。这些资源的范围从二氧化碳(CO_2)和水蒸气在人类生境(表面及航天器)和在火星大气中,以水(冰和水合矿物)和各种氧,碳,和金属轴承资源上彗星发现和小行星,并在众多有趣的目的地(月球,火星,土卫六,并木卫二)行星表面的材料。很多当事人正在调查共性技术和流程来有效地提取和使用这些资源。本文将讨论ISRU是如何实现的远近兼顾短期载人探索任务,并提交总结最近和正在进行的由NASA /约翰逊航天中心主办ISRU工作。将详细描述的技术的开发活动包括高级CO_2冷冻采集系统,多流体公共的隔板低温存储罐,以及各种微通道化学反应器的概念的。在供以后制备最近先进Sabatier反应器概念开发活动,端至端系统测试将被描述为良好。本文还讨论了基于ISRU战略,使大量的机器人和人的表面勘探作业和相关正在进行示范项目的流动站应用基于燃料电池的发电设备。 ISRU,生命支持系统和舱外航天(EVA)之间的共性技术,应用也将呈现。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号