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New Strategies and Developments in Transparent Free-Form Design: From Facetted to Nearly Smooth Envelopes

机译:透明自由格式设计的新策略和发展:从多面到几乎平滑的信封

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Free-form geometries in architecture pose new challenges to designers and engineers. Form, structure and fabrication processes are closely linked, which makes the realization of complex architectural free-form structures even harder. Free-form transparent design today is mainly based on triangularly facetted forms or quadrilateral meshes supported by a structure composed of rectilinear bars, with strong shape restrictions. After a brief review of the history, we report on some very recent progress in this area. Beginning with a presentation of improved methods for triangle mesh design, we also discuss experiences in coupling triangular glass panels with continuous curved structures, seeking an optimised structural behaviour and simplified connections. Furthermore, we present how the results of research on planar quadrilateral (PQ) meshes lead the way to optimized beam layouts and the breakdown of free-form shapes using planar quadrilateral panels. PQ meshes are rooted in discrete differential geometry, an active area of mathematical research. Using recent projects as examples, we discuss how transparent free-form envelopes with a smooth visual appearance are achievable if the structure is designed to adhere to the limits of current glazing technology and the surfaces are reasonably simple (e.g. rotational, overall developable, or of a small scale). In section 6 we show how the latter restriction can be relaxed: the theoretical and computational methodology for PQ meshes can easily be extended to create nearly smooth approximations of free-form surfaces by single-curved panels. This has a strong impact on glass panelling design, since it avoids expensive double-curvature glass and exploits cold-bending technology. We elaborate on how this discretisation technique goes hand in hand with the technology for construction of the structure, glazing system and structural joints. Our approach has been tested in three case studies, each one validating a particular aspect of the design process.
机译:建筑中的自由几何形状对设计师和工程师提出了新的挑战。形式,结构和制造过程紧密联系在一起,这使得复杂的建筑自由形式结构的实现更加困难。如今,自由形式的透明设计主要基于三角形刻面形式或四边形网格,并由具有严格形状限制的直线条组成的结构支撑。在简要回顾历史之后,我们报告了该领域的一些最新进展。从介绍三角形网格设计的改进方法开始,我们还将讨论将三角形玻璃面板与连续弯曲结构耦合在一起的经验,以寻求优化的结构性能和简化的连接。此外,我们介绍了平面四边形(PQ)网格的研究结果如何引导优化梁布局和使用平面四边形面板破坏自由形状的方法。 PQ网格源于离散微分几何,这是数学研究的活跃领域。以最近的项目为例,我们讨论了如果结构被设计为遵守当前玻璃技术的限制并且表面相当简单(例如旋转,整体可显影或表面光滑),则如何获得具有平滑视觉外观的透明自由形式信封?小规模)。在第6节中,我们展示了如何放宽后面的限制:PQ网格的理论和计算方法可以轻松地扩展,以通过单曲线面板创建接近自由曲面的平滑近似。这避免了昂贵的双曲率玻璃并利用了冷弯技术,因此对玻璃镶板设计产生了重大影响。我们将详细介绍这种离散技术与结构,玻璃系统和结构接缝的构造技术如何相辅相成。我们的方法已经在三个案例研究中进行了测试,每个案例都验证了设计过程的特定方面。

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