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A geometric modelling framework for conceptual structural design from early digital architectural models

机译:用于早期数字建筑模型的概念结构设计的几何建模框架

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Computer support for conceptual structural design is still ineffective. This is due, in part, to the fact that current computer applications do not recognize that structural design and architectural design are highly interdependent processes, particularly at the early stages. The goal of this research is to assist structural engineers at the conceptual stage with early digital architectural models. This paper presents a geometric modeling framework for facilitating the engineers' interactions with architectural models in order to detect potential structural problems, uncover opportunities, respect constraints, and ultimately synthesize structural solutions interactively with architectural models. It consists of a process model, a representation model and synthesis algorithms to assist the engineer on demand at different stages of the design process. The process model follows a top-down approach for design refinements. The representation model describes the structural system as a hierarchy of entities with architectural counterparts. The algorithms rely on geometric and topologic relationships between entities in the architectural model and a partial structural model to help advance the synthesis process. A prototype system called StAr (Structure-Architecture) implements this framework. A case study illustrates how the framework can be used to support the conceptual structural design process.
机译:对概念结构设计的计算机支持仍然无效。部分原因是由于当前的计算机应用程序不认识到结构设计和体系结构设计是高度相互依赖的过程,尤其是在早期阶段。这项研究的目的是在概念阶段为结构工程师提供早期的数字建筑模型帮助。本文提出了一种几何建模框架,以促进工程师与建筑模型的交互,以便发现潜在的结构问题,发现机会,尊重约束,并最终与建筑模型交互地综合结构解决方案。它由一个过程模型,一个表示模型和综合算法组成,可以在设计过程的不同阶段按需帮助工程师。过程模型遵循自顶向下的方法进行设计改进。表示模型将结构系统描述为具有体系结构副本的实体的层次结构。该算法依赖于建筑模型中的实体与部分结构模型之间的几何和拓扑关系,以帮助推进合成过程。一个名为StAr(结构-体系结构)的原型系统实现了此框架。案例研究说明了如何使用该框架来支持概念结构设计过程。

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