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GEOMETRY-BASED UNDERSTANDING OF STRUCTURES

机译:基于几何的结构理解

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摘要

The development of structures with complex, curved geometry is a complicated process in which spatial and structural considerations are often addressed separately. This paper describes the possibilities of an integrated approach to the form finding of such structures that is based on geometrical rather than analytical or numerical representations of the relation between form and forces. The approach adopts key principles of graphic statics and extends them with the latest research on form finding, structural design and optimisation techniques. Through a series of examples, the paper demonstrates that with implementations of this approach in constraint-based and parametric software, powerful tools can be created for shape and equilibrium explorations oftwo-and three-dimensional structural systems. These tools provide continuous, bi-directional control over both spatial and structural characteristics, through an intuitive, visual language that is equally accessible to architects and engineers, and can be used in research and professional practice as well as in teaching.
机译:具有复杂的弯曲几何结构的结构的开发是一个复杂的过程,在该过程中,空间和结构方面的考虑常常被分开解决。本文描述了一种综合方法来寻找这种结构的可能性,这种方法是基于形状与力之间关系的几何表示而非解析或数字表示。该方法采用了图形静态的关键原理,并将其扩展到有关形状查找,结构设计和优化技术的最新研究。通过一系列示例,本文证明了通过在基于约束的参数化软件中实施此方法,可以为二维和三维结构系统的形状和平衡探索创建强大的工具。这些工具通过直观的可视语言提供对空间和结构特征的连续,双向控制,建筑师和工程师同样可以使用,并且可以用于研究和专业实践以及教学中。

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