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Architecture for space habitats. Role of architectural design in planning artificial environment for long time manned space missions

机译:空间栖息地的体系结构。建筑设计在长期载人航天任务人工环境规划中的作用

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摘要

The paper discusses concepts about the role of architecture in the design of space habitats and the development of a general evaluation criteria of architectural design contribution. Besides the existing feasibility studies, the general requisites, the development studies, and the critical design review which are mainly based on the experience of human space missions and the standards of the NASA-STD-3000 manual and which analyze and evaluate the relation between man and environment and between man and machine mainly in its functionality, there is very few material about design of comfort and wellbeing of man in space habitat. Architecture for space habitat means the design of an artificial environment with much comfort in an "atmosphere" of wellbeing. These are mainly psychological effects of human factors which are very important in the case of a long time space mission. How can the degree of comfort and "wellbeing atmosphere" in an artificial environment be measured? How can the quality of the architectural contribution in space design be quantified? Definition of a criteria catalogue to reach a larger objectivity in architectural design evaluation. Definition of constant parameters as a result of project necessities to quantify the quality of the design. Architectural design analysis due the application and verification within the parameters and consequently overlapping and evaluating results. Interdisciplinary work between architects, astronautics, engineers, psychologists, etc. All the disciplines needed for planning a high quality habitat for humans in space. Analysis of the principles of well designed artificial environment. Good quality design for space architecture is the result of the interaction and interrelation between many different project necessities (technological, environmental, human factors, transportation, costs, etc.). Each of this necessities is interrelated in the design project and cannot be evaluated on its own. Therefore, the design process needs constant check ups to choose each time the best solution in relation to the whole. As well as for the main disciplines around human factors, architectural design for space has to be largely tested to produce scientific improvement.
机译:本文讨论了有关建筑在空间栖息地设计中的作用以及建筑设计贡献的一般评估标准的发展的概念。除了现有的可行性研究之外,一般要求,开发研究和关键设计审查均主要基于人类太空飞行的经验和NASA-STD-3000手册的标准,并分析和评估人与人之间的关系。与环境之间以及人与机器之间的关系主要在功能上,关于太空居住环境中人的舒适度和福祉设计的材料很少。空间栖息地的体系结构意味着在“大气层”中舒适地设计人工环境。这些主要是人为因素的心理影响,这在长时间太空飞行中非常重要。在人造环境中如何测量舒适度和“幸福氛围”?如何量化空间设计中建筑贡献的质量?定义标准目录以在建筑设计评估中达到更大的客观性。由于需要量化设计质量,因此需要定义常量参数。架构设计分析应在参数内进行应用和验证,并因此进行重叠和评估。建筑师,航天,工程师,心理学家等之间的跨学科工作。为太空中的人类规划高质量栖息地所需的所有学科。分析精心设计的人工环境的原理。空间架构的高质量设计是许多不同项目必需品(技术,环境,人为因素,运输,成本等)之间相互作用和相互关联的结果。每个必需项在设计项目中都是相互关联的,因此无法单独进行评估。因此,设计过程需要不断进行检查,以选择每次相对于整体而言最佳的解决方案。除涉及人为因素的主要学科外,还必须对空间建筑设计进行大量测试,以产生科学进步。

著录项

  • 来源
    《Acta astronautica》 |2007年第7期|p.588-593|共6页
  • 作者

    Vera Martinez;

  • 作者单位

    Fachgebiet Entwerfen und Raumgestaltung und Entwerfen und Baugestaltung, Faculty of Architecture, Technical University Darmstadt, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航天(宇宙航行);
  • 关键词

  • 入库时间 2022-08-18 02:37:15

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