首页> 外文会议>AIAA space forum >International Space Exploration Coordination Group Assessment of Technology Gaps for LOx/Methane Propulsion Systems for the Global Exploration Roadmap
【24h】

International Space Exploration Coordination Group Assessment of Technology Gaps for LOx/Methane Propulsion Systems for the Global Exploration Roadmap

机译:国际空间探索协调小组对全球探索路线图的液氧/甲烷推进系统技术差距的评估

获取原文

摘要

As part of the Global Exploration Roadmap (GER), the International Space Exploration Coordination Group (ISECG) formed two technologygap assessment teams to evaluate topic discipline areas that had not been worked at an international level to date. The participating agencies were ASI, CNES, DLR, ESA, JAXA, and NASA. Accordingly, the ISECG Technology Working Group (TWG) recommended two discipline areas based on Critical Technology Needs reflected within the GER Technology Development Map (GTDM): Dust Mitigation and LOX/Methane Propulsion. LOx/Methane propulsion systems are enabling for future human missions Mars by significantly reducing the landed mass of the Mars ascent stage through the use of in-situ propellant production, for improving common fluids for life support, power and propulsion thus allowing for diverse redundancy, for eliminating the corrosive and toxic propellants thereby improving surface operations and reusability, and for increasing the performance of propulsion systems. The goals and objectives of the international team are to determine the gaps in technology that must be closed for LOx/Methane to be usedin human exploration missions in cis-lunar, lunar, and Mars mission applications. An emphasis is placed on near term lunar lander applications with extensibility to Mars. Each agency provided a status of the substantial amount of Lox/Methane propulsion system development to date and their inputs on the gaps in the technology that are remaining. The gaps, which are now opportunities for collaboration, are then discussed.
机译:作为全球探索路线图(GER)的一部分,国际空间探索协调小组(ISECG)组成了两个技术差距评估小组,以评估迄今尚未在国际层面开展工作的主题学科领域。参与机构是ASI,CNES,DLR,ESA,JAXA和NASA。因此,ISECG技术工作组(TWG)根据GER技术开发图(GTDM)中反映的关键技术需求,建议了两个学科领域:减尘和LOX /甲烷推进。 LOx /甲烷推进系统通过使用就地推进剂生产来显着减少火星上升阶段的着陆质量,从而改善了人类的火星任务,从而改善了用于维持生命,提供动力和推进力的常用流体,从而实现了多种冗余,用于消除腐蚀性和有毒的推进剂,从而改善表面操作和可重复使用性,以及提高推进系统的性能。国际团队的目的是确定在LOx /甲烷用于顺月,月球和火星任务应用的人类探索任务中必须弥补的技术差距。重点放在可扩展到火星的近期月球着陆器应用上。每个机构都提供了迄今为止大量Lox /甲烷推进系统的发展状况,以及他们对剩余技术差距的投入。然后讨论了差距,这些差距现在是合作的机会。

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