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Spirited Skies Project: Silica Aerogel Domes for the Habitat of the Future

机译:千姿百态的天空项目:未来人居的二氧化硅气凝胶穹顶

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The hypothesis of this paper is the examination of dome constructions using the space technology nanomaterial silica aerogel as insulating material. Silica aerogels are nanomaterials with excellent thermal insulations properties because 99.98% of their volume can be pure air. Insulation’s origin is the Latin insula ‘island’, an “isolated land” we could say. Planet Earth is a “space island”, in other words an oasis enveloped by its atmosphere: a layer of gases named sky surrounds our planet and protects life from genetic damage by ultraviolet solar radiation. By imitating nature -and in order to protect themselves-humans create garments and architectures. The primary function for garments and architecture is to insulate and to protect the human body. Silica aerogels could be considered as the eco friendly “plastic” of the 21% century because they can find application in any field. As aerogels are phenomenal energy savers they could be the paradigmatic materials for designing the insulation for future sustainable space habitats. Aerogels represent one of the most promising materials for thermally insulating buildings of the future, since the material demonstrates high performance, exhibiting thermal conductivities of 10-20 mW/(mk) in insulated, commercial products not used in a vacuum. Aerogels, when manufactured, can exhibit varying degrees of opacity, including both translucency and transparency, thereby enabling a diverse variety of applications for insulation in buildings that might require access to daylight or exploit sunlight for energy. Silica aerogel is the material-epicentre of all of the author’s multidisciplinary research. During the interactive presentation we will propose the design of small glass domes entitled Spirited Skies and Heaven in a Glass where silica aerogel was poured into jacketed glass beakers and micro clouds were settled in between the glazing. We suggest that the artificial clouds set on the transparent or translucent shell of these future space domes may relieve astronauts of their nostalgia of Earth, our home planet. With the same intention we also propose for a future space mission to utilise water (or wine) glasses with blue and gold skyscapes in double walled glass utensils.
机译:本文的假设是对使用太空技术纳米材料二氧化硅气凝胶作为绝缘材料的圆顶结构的研究。二氧化硅气凝胶是具有优异绝热性能的纳米材料,因为其99.98%的体积可以是纯净的空气。绝缘的起源是拉丁绝缘岛“ island”,我们可以说是“孤立的土地”。行星地球是一个“太空岛”,换句话说就是被大气层包围的绿洲:一层名为天空的气体环绕着我们的行星,保护生命免受紫外线辐射造成的基因破坏。通过模仿自然-为了保护自己,人类创造了服装和建筑。服装和建筑的主要功能是绝缘并保护人体。二氧化硅气凝胶可以被认为是21%世纪的环保“塑料”,因为它们可以在任何领域找到应用。由于气凝胶是惊人的节能器,因此它们可以作为设计隔热材料的典范材料,以用于未来的可持续空间栖息地。气凝胶代表了未来最有前景的用于绝热建筑的材料之一,因为该材料表现出高性能,在不用于真空的绝热商用产品中具有10-20 mW /(mk)的导热率。气凝胶在制造时会表现出不同程度的不透明性,包括半透明性和透明性,从而使建筑物的隔热应用变得多样化,可能需要使用日光或利用阳光来获取能量。二氧化硅气凝胶是作者所有多学科研究的重要材料。在互动式演示中,我们将提出名为“玻璃中的千与千寻的天空和天堂”的小型玻璃穹顶的设计,将二氧化硅气凝胶倒入带夹套的玻璃烧杯中,并在玻璃之间沉积微雾。我们建议,在这些未来太空圆顶的透明或半透明外壳上设置的人造云可能会使宇航员摆脱对我们本国星球地球的怀旧之情。出于同样的意图,我们还建议未来的太空任务在双层玻璃器皿中使用带有蓝色和金色天空景观的水(或酒)玻璃杯。

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