A Novel Approach of Structural FE Modelling Using 4D Architectural Design Sketches

Dalel Daleyev, S. Rasoulzadeh, Iva Kovacic
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Abstract

This paper describes a novel methodology for a quick structural finite element (FE) modelling of free-form and high-rise structures sketched within a developed 4D semantic, mixed reality sketching application, targeted for early stages of architectural design, followed by a shape inference pipeline. The novel approach presented in this paper intends to estimate structural viability for the architectural concept in the early preliminary draft. A fast collaborative export of geometrical data from the sketching app to the generative algorithm for the assembling of structural topology will be used to define analytical FE model. With pre-defined data, such as material information and the type of load-bearing system, a simple linear-elastic FE calculation will be conducted in order to analyse the structural parts in ultimate (ULS) and serviceability limit states (SLS) and point out the problematic places. Once the decision regarding the architectural design of the sketched structure is made, the compiled FE model will be afterwards transferred to a commercial FE software in order to undergo further, more detailed structural analysis. The advantage of the described modelling method is a) time saving as it generates a model directly upon architectural design, and b) by generation of the plausible FE model in the very early stages of planning and post-editing it during the process.
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一种利用四维建筑设计草图进行结构有限元建模的新方法
本文描述了一种新的方法,用于在开发的4D语义混合现实素描应用程序中对自由形式和高层结构进行快速结构有限元(FE)建模,目标是建筑设计的早期阶段,然后是形状推理管道。本文提出的新方法旨在评估建筑概念在早期初步草案中的结构可行性。将几何数据从素描应用程序快速协同导出到结构拓扑组装的生成算法,用于定义分析有限元模型。根据材料信息和承载系统类型等预先定义的数据,进行简单的线弹性有限元计算,以分析结构件的极限状态(ULS)和使用极限状态(SLS),并指出问题所在。一旦对结构草图的建筑设计做出决定,编译好的有限元模型将随后转移到商业有限元软件中,以便进行进一步,更详细的结构分析。所描述的建模方法的优点是a)节省时间,因为它直接在建筑设计上生成模型,b)在规划的早期阶段生成合理的有限元模型,并在过程中对其进行后期编辑。
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