首页> 外文会议>58th International Astronautical Congress 2007 >Critical analysis of ISRU plants integration in complex architectures for planetary human colonies development
【24h】

Critical analysis of ISRU plants integration in complex architectures for planetary human colonies development

机译:对ISRU植物整合到人类星球发展的复杂体系结构的批判性分析

获取原文

摘要

A sustainable expansion of human presence in space should be based on the development of self-sustaining outposts and permanent bases, and therefore on the capability of producing part, or possibly the entire amount, of necessary resources in situ. Most useful resources can be extracted from local materials (e.g. from the lunar regolith or the martian atmosphere), by means of dedicated In-Situ Resources Utilization (ISRU) plants which must be included within the overall surface architecture. These plants might require different mobile elements (e.g. miners and haulers) to extract and transport raw materials from the excavation site to the plant, to transport by-products to secondary plants or to containment facilities, and, possibly, to transport the produced resources to storage facilities. EVA activities might be required for servicing and maintenance activities or, in case of man-tended plants, to manage and control the ISRU process phases. Thus, the integration of an ISRU plant into a manned base involves several surface elements together with the planning, scheduling and management of activities and operations. This paper presents an analysis of the requirements, constraints, and risks which characterize and drive that integration and describes the synergies and the interfaces which must be considered in developing the build-up and maintenance process of manned surface architectures including ISRU systems. A trade off analysis between completely autonomous plants and man-tended ones is proposed, including safety and reliability considerations. The critical analysis here presented is supported by parametrical models of ISRU production requirements and performances to support a manned base, exploiting a library of dynamic models of ISRU plants, Environmental Control and Life Support Systems (ECLSSs) and power provision systems developed at Politecnico di Milano - DIA.
机译:人类在空间中的存在的可持续发展应基于自我维持的前哨基地和常设基地的发展,因此,应基于就地生产部分或可能全部数量的必要资源的能力。可以通过专用的现场资源利用(ISRU)植物从本地材料中提取最有用的资源(例如从月球重生石或火星大气中),这些植物必须包括在整个地面建筑中。这些工厂可能需要不同的移动元件(例如,矿工和搬运工)才能将原材料从挖掘现场提取并运输到工厂,将副产品运输到二级工厂或收容设施,并可能将生产的资源运输到工厂。储存设施。维修和保养活动可能需要EVA活动,或者如果是人工工厂,则需要进行EVA活动来管理和控制ISRU过程阶段。因此,将ISRU工厂整合到有人值守的基地中涉及几个表面要素,以及活动和运营的计划,调度和管理。本文介绍了表征,驱动集成的需求,约束和风险的分析,并描述了在开发包含ISRU系统的载人表面架构的建立和维护过程中必须考虑的协同作用和接口。提出了一种在完全自主的工厂和需要维护的工厂之间进行权衡分析的方法,其中包括安全性和可靠性方面的考虑。此处提出的关键分析得到了ISRU生产要求和性能参数化模型的支持,以支持有人手,并利用米兰理工大学开发的ISRU工厂,环境控制和生命支持系统(ECLSS)和电源系统的动态模型库-DIA。

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