首页> 外文期刊>Acta astronautica >[Interior] Configuration options, habitability and architectural aspects of the transfer habitat module (THM) and the surface habitat on Mars (SHM)/ESA's AURORA human mission to Mars (HMM) study
【24h】

[Interior] Configuration options, habitability and architectural aspects of the transfer habitat module (THM) and the surface habitat on Mars (SHM)/ESA's AURORA human mission to Mars (HMM) study

机译:[内部]转移栖息地模块(THM)和火星表面栖息地(SHM)/ ESA的AURORA人类火星研究(HMM)的配置选项,可居住性和建筑方面

获取原文
获取原文并翻译 | 示例
           

摘要

This paper discusses the findings for [Interior] configuration options, habitability and architectural aspects of a first human spacecraft to Mars. In 2003 the space architecture office LIQUIFER was invited by the European Space Agency's (ESA) AURORA Program committee to consult the scientists and engineers from the European Space and Technology Center (ESTEC) and other European industrial communities with developing the first human mission to Mars, which will take place in 2030, regarding the architectural issues of crewed habitats. The task was to develop an interior configuration for a transfer vehicle (TV) to Mars, especially a transfer habitation module (THM) and a surface habitat module (SHM) on Mars. The total travel time Earth—Mars and back for a crew of six amounts to approximately 900 days. After a 200-day-flight three crewmembers will land on Mars in the Mars excursion vehicle (MEV) and will live and work in the SHM for 30 days. For 500 days before the 200-day journey back the spacecraft continues to circle the Martian orbit for further exploration. The entire mission program is based on our present knowledge of technology. The project was compiled during a constant feedback-design process and trans-disciplinary collaboration sessions in the ESA-ESTEC concurrent design facility. Long-term human space flight sets new spatial conditions and requirements to the design concept. The guidelines were developed from relevant numbers and facts of recognized standards, interviews with astronauts/cosmonauts and from analyses about habitability, sociology, psychology and configuration concepts of earlier space stations in combination with the topics of the individual's perception and relation of space. Result of this study is the development of a prototype concept for the THM and SHM with detailed information and complete plans of the interior configuration, including mass calculations. In addition the study contains a detailed explanation of the development of the Design process including all suggested design and configuration options.
机译:本文讨论了火星上第一架人类航天器的[内部]配置选项,可居住性和体系结构方面的发现。 2003年,太空建筑事务所LIQUIFER受欧洲航天局(ESA)的AURORA计划委员会的邀请,向欧洲航天技术中心(ESTEC)和其他欧洲工业界的科学家和工程师进行咨询,以开展人类对火星的首次任务,有关人员居住环境的建筑问题,该活动将于2030年举行。任务是为前往火星的转运车(TV)开发内部配置,尤其是为火星上的转运居住模块(THM)和地表栖息模块(SHM)开发。六名机组人员从地球到火星往返的总时间约为900天。飞行200天后,三名机组人员将乘坐火星游览车(MEV)降落在火星上,并将在SHM中生活和工作30天。在返回200天的旅程之前的500天中,航天器继续绕火星轨道进行进一步探索。整个任务计划基于我们目前的技术知识。该项目是在ESA-ESTEC并发设计设施的持续反馈设计过程和跨学科协作会议期间进行编译的。长期的人类太空飞行为设计概念设定了新的空间条件和要求。该准则是根据公认标准的相关数量和事实,与宇航员/宇航员的访谈以及对早期空间站的可居住性,社会学,心理学和配置概念的分析,结合个人的感知和空间关系等主题制定的。这项研究的结果是开发了THM和SHM的原型概念,其中包括详细的信息和完整的内部配置计划,包括质量计算。此外,该研究还对设计过程的发展进行了详细说明,包括所有建议的设计和配置选项。

著录项

相似文献

  • 外文文献
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