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A Dangerous Precedent; the Geodesic Dome as a Credible Space Architecture Typology

机译:危险的先例; 测地圆顶作为可靠的空间架构类型

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There is persistent employment of the geodesic dome as an architectural typology for use in the environment of outer space and in an extra-terrestrial, planetary surface context. So persistent is the geodesic dome typology in this context that it presents itself as an established vernacular architecture, regardless of the lack of tangible evidence of its functionality. This typology has been used in illustrations within NASA's 1977 publication. Space Manufacturing Facilities (Space Colonies) to herald, at the time, near-future prototypical concepts of lunar architecture. The typology has permeated the genre of science fiction and appeared in countless films and television series to describe realistic and credible examples of a potential space architecture to a global audience. Examples include, but are not limited to, Earth II, Silent Running, Slaughterhouse 5, Battlestar Galactica, and recently The Expanse television series. In a terrestrial and realistic context, designer Buckminster Fuller had championed the geodesic dome as a highly versatile structure capable of supporting a multitude of programs. More recently, Bjarke Ingels and his terrestrial architecture firm. BIG, has used the geodesic dome typology as the foundation for the 2017 Mars Science City project, where he seeks, 'to explore what a Martian Vernacular will look like.' The reality of the geodesic dome typology in the context of space is that it is an inefficient structure due to aspects that include construction, maintenance, and performance inefficiencies. Even when deployed within an extreme environment in a terrestrial setting the geodesic dome has underperformed, with the now deconstructed Amundsen-Scott South Pole Station in Antarctica an example of the form's underperformance. The station could not withstand the stresses placed upon it, by such extreme environmental conditions. Yet, the geodesic dome typology as a technologically credible habitat solution persists even though within architectu
机译:Geodesic Dome的持续就业是在外层空间环境中使用的建筑类型,并且在陆地行星表面上下文中使用。因此,持久性是在这种背景下的测地圆顶类型,它将其自身作为成熟的白话架构,无论其功能的功能缺乏有形的证据如何。该类型在NASA 1977年出版物中的插图中使用。空间制造设施(太空殖民地)到先驱,当时,月球建筑的近期近期型概念。 Texology渗透了科幻小说,并出现在无数电影和电视剧中,以描述潜在的空间架构的现实和可靠的例子,以全球观众。例子包括但不限于地球II,无声运行,屠宰场5,Battlestar Galactica,最近是广阔的电视系列。在一个陆地和现实的背景下,设计师荞麦斯特富勒斯冠军冠军作为能够支持众多节目的高度通用结构。最近,Bjarke Ingels和他的陆地建筑公司。大,使用了Geodesic Dome Typology作为2017 Mars Science City项目的基础,在那里他寻求的,'探索火星洋星的看起来像什么样子。在空间的背景下,Geodsic Dome Typology的现实是由于包括构造,维护和性能低效率的方面,它是一种低效的结构。即使在陆地设置的极端环境中部署了Geodesic Dome已经表现得很好,即在南极洲的现在被解构的Amundsen-Scott南极站是表格表现不佳的示例。通过这种极端的环境条件,该站无法承受放置在其上的应力。然而,即使在建筑内,Geodsic Dome Typoloolools为技术可信的栖息地解决方案仍然存在

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