论文标题
关于弹性地球网格及其平面到空间部署
On Elastic Geodesic Grids and Their Planar to Spatial Deployment
论文作者
论文摘要
我们提出了一种新型的平面到空间可部署结构,我们称之为弹性地球网格。我们的方法旨在使用弯曲层的空间网格的自由形表面近似,可以使用简单的运动学机制从平面配置中部署。这样的弹性结构是易于制作的,易于模糊的,并且结合了物理学和美学的近似形状。我们提出了基于目标表面上测量曲线网络的解决方案,并引入了一组条件和假设,这些条件和假设在实践中可以密切满足。我们的配方允许使用纯粹的几何方法,该方法通过在差异几何形状的理论见解之上构建来避免数值形状优化的必要性。我们提出了一种解决弹性测量网格的设计,计算和物理模拟的解决方案,并提出了几个具有不同复杂性的小规模示例。此外,我们通过将结果与制造模型的激光扫描进行比较,提供了我们方法的经验证明。我们的方法旨在作为建筑和其他创造性学科中弹性网格的形式调查工具,并应为设计师提供一种易于手柄的方式来探索此类结构。
We propose a novel type of planar-to-spatial deployable structures that we call elastic geodesic grids. Our approach aims at the approximation of freeform surfaces with spatial grids of bent lamellas which can be deployed from a planar configuration using a simple kinematic mechanism. Such elastic structures are easy-to-fabricate and easy-to-deploy and approximate shapes which combine physics and aesthetics. We propose a solution based on networks of geodesic curves on target surfaces and we introduce a set of conditions and assumptions which can be closely met in practice. Our formulation allows for a purely geometric approach which avoids the necessity of numerical shape optimization by building on top of theoretical insights from differential geometry. We propose a solution for the design, computation, and physical simulation of elastic geodesic grids, and present several fabricated small-scale examples with varying complexity. Moreover, we provide an empirical proof of our method by comparing the results to laser-scans of the fabricated models. Our method is intended as a form-finding tool for elastic gridshells in architecture and other creative disciplines and should give the designer an easy-to-handle way for the exploration of such structures.