首页> 外文会议>SPIE Conference on Bioinspiration, Biomimetics, and Bioreplication >BOWOOSS — Bionic Optimized Wood Shells with Sustainability
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BOWOOSS — Bionic Optimized Wood Shells with Sustainability

机译:Bowooss - 仿生优化木壳可持续发展

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In architecture, shell construction is used for the most efficient, large spatial structures. Until now the use of wood rather played a marginal role, implementing those examples of architecture, although this material offers manifold advantages, especially against the background of accelerating shortage of resources and increasing requirements concerning the energy balance. Regarding the implementation of shells, nature offers a wide range of suggestions. The focus of the examinations is on the shells of marine plankton, especially of diatoms, whose richness in species promises the discovery of entirely new construction principles. The project is targeting at transferring advantageous features of these organisms on industrial produced, modular wood shell structures. Currently a transfer of these structures in CAD - models is taking place, helping to perform stress analysis by computational methods. Micro as well as macro structures are the subject of diverse consideration, allowing to draw the necessary conclusions for an architectural design. The insights of these tests are the basis for the development of physical models on different scales, which are used to verify the different approaches. Another important aim which is promoted in the project is to enhance the competitiveness of timber construction. Downsizing of the prefabricated structural elements leads to considerable lower transportation costs as abnormal loads can be avoided as far as possible and means of transportation can be loaded with higher efficiency so that an important contribution to the sustainability in the field of architecture can also be made.
机译:在架构中,壳牌结构用于最有效,大的空间结构。直到现在使用木材相当发挥了边际作用,实施了这些建筑的例子,尽管这种材料提供了多种优势,尤其是加速资源短缺的背景和提高能量平衡的要求。关于炮弹的实施,自然提供了广泛的建议。考试的重点是海洋浮游生物的贝壳,特别是硅藻,其丰富的物种承诺发现完全新的建筑原则。该项目旨在瞄准在工业生产的模块化木壳结构上转移这些生物的有利特征。目前正在进行CAD模型中的这些结构的转移,有助于通过计算方法进行压力分析。微观和宏观结构是各种考虑因素的主题,允许为建筑设计提取必要的结论。这些测试的见解是在不同尺度上开发物理模型的基础,用于验证不同的方法。在该项目中促进的另一个重要目标是提高木材建设的竞争力。由于尽可能避免,预制结构元件的缩小性导致运输成本相当较低,并且可以避免异常载荷,并且还可以以更高的效率加载运输工具,因此还可以制造对结构领域的可持续性的重要贡献。

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