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Optimized Ruled Surfaces with an Application to Thin-Walled Concrete Shells

机译:优化的统治表面,具有薄壁混凝土壳的应用

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For lightweight structures in the field of architecture and civil engineering, concrete shells with negative Gaussian curvature are frequently used. One class of such surfaces are the skew ruled surfaces. To model such surfaces for the purpose of form-finding, we use the line geometry model of the Study sphere in the space of dual vectors. It allows the mapping of lines of the three-dimensional Euclidean space into points of the four-dimensional model space. The correspondence of minimal ruled surfaces, which are the helicoids, with geodesics on the dual unit sphere can be handled with the dual Rodrigues formula. This paper presents a proof of the formula and extends it to a general form, which avoids exceptions like parallel rulings. This approach also speeds up the interpolation algorithms for form-finding. The line geometry model, as implemented in Rhinoceros3D's plug-in Grasshopper, was used to design a small thin-walled footbridge of concrete in cooperation with the TU Berlin. The formwork was prepared with a hot-wire foam cutter at the TU Dresden.
机译:对于建筑和土木工程领域的轻质结构,经常使用具有负高斯曲率的混凝土壳。一类这样的表面是歪斜的表面。为了为表格找到的目的来模拟这种表面,我们在双向空间中使用研究领域的线几何模型。它允许将三维欧几里德空间的线映射到四维模型空间的点。可以用双rodrigues公式处理是双单元球体上的大旋转表面的最小统治表面的对应关系。本文呈现了公式的证明,并将其延伸到一般形式,避免了平行裁定的异常。这种方法还加快了用于表单查找的插值算法。在Rhinoceros3d的插入式蚱蜢中实施的线几何模型用于设计与Tu Berlin合作的混凝土的小型薄壁行人桥。该模板在Tu德累斯顿提供热线泡沫切割机。

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