论文标题
冷弯玻璃立面的计算设计
Computational Design of Cold Bent Glass Façades
论文作者
论文摘要
冷弯曲玻璃是实现双弯曲玻璃立面的一种有前途且具有成本效益的方法。它们是通过将平面玻璃板连接到弯曲框架来产生的,并需要将发生的压力保持在安全的范围内。但是,由于材料的脆弱性,在冷弯曲玻璃面板的设计空间中浏览设计空间非常具有挑战性,这阻碍了形式找到的几乎可行性和美学上令人愉悦的冷弯玻璃尺寸。我们提出了一种交互式,数据驱动的方法,用于设计冷弯曲玻璃立面,该方法可以无缝集成到典型的建筑设计管道中。我们的方法允许非专家用户交互式编辑参数表面,同时为冷弯玻璃面板的变形形状和最大应力提供实时反馈。设计会自动改进,以最大程度地减少几个公平标准,而最大应力保持在玻璃极限之内。我们通过使用通过超过一百万个模拟训练的可区分混合密度网络来实现交互式帧速率。给定弯曲边界,我们的回归模型能够处理多稳态配置并准确预测面板的平衡形状及其相应的最大应力。我们显示的预测是高度准确的,并通过对冷弯曲玻璃表面的物理实现来验证我们的结果。
Cold bent glass is a promising and cost-efficient method for realizing doubly curved glass façades. They are produced by attaching planar glass sheets to curved frames and require keeping the occurring stress within safe limits. However, it is very challenging to navigate the design space of cold bent glass panels due to the fragility of the material, which impedes the form-finding for practically feasible and aesthetically pleasing cold bent glass façades. We propose an interactive, data-driven approach for designing cold bent glass façades that can be seamlessly integrated into a typical architectural design pipeline. Our method allows non-expert users to interactively edit a parametric surface while providing real-time feedback on the deformed shape and maximum stress of cold bent glass panels. Designs are automatically refined to minimize several fairness criteria while maximal stresses are kept within glass limits. We achieve interactive frame rates by using a differentiable Mixture Density Network trained from more than a million simulations. Given a curved boundary, our regression model is capable of handling multistable configurations and accurately predicting the equilibrium shape of the panel and its corresponding maximal stress. We show predictions are highly accurate and validate our results with a physical realization of a cold bent glass surface.