Ergonomics of spatial configurations: a voxel-based modelling framework for accessibility and visibility simulations

S. Azadi, Nan Bai, P. Nourian
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Abstract

How can we assess the ergonomic comfort of a sizeable spatial configuration such as the indoor space of a complex building or an urban landscape when we design, plan, and manage the space? Is there a fundamental difference between indoor [architectural] spatial configurations and outdoor [urban] spatial configurations with respect to ergonomics? Can we have a unified approach to the computational study of spatial ergonomics? This paper addresses these fundamental questions while providing a brief taxonomic review of the scholarly literature on these matters from a mathematical point of view, including a brief introduction to the modelling-based approaches to the computational ways of studying the fundamental effects of spatial configuration on human behaviours. Furthermore, the paper proposes a computational approach for ergonomic assessment of spatial configurations that explicitly allows for combined accessibility and visibility analyses in the built environment. The gist of this approach is the conceptualisation of spatial configurations as rasterised (voxelated) 2D manifold walkable terrains whose voxels have 3D vistas, unifying the simulations and analyses of accessibility and visibility. The paper elaborates on how such a representation of space can provide for conducting various sorts of computational queries, analyses, and simulation experiments for research in spatial ergonomics. The paper concludes with a mapping of the computational modelling approaches pertinent to the study and assessment of spatial ergonomics; and marks avenues of future research on various categories of exploratory, generative, and associative models for ex-ante and ex-post assessment of ergonomic matters at spatial scales.
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空间配置的人体工程学:基于体素的无障碍和可视性模拟建模框架
我们在设计、规划和管理大型空间配置(如复杂建筑的室内空间或城市景观)时,如何评估其符合人体工程学的舒适度?在人体工程学方面,室内(建筑)空间配置与室外(城市)空间配置是否存在根本区别?我们能否采用统一的方法来计算研究空间人体工程学?本文在探讨这些基本问题的同时,还从数学角度对有关这些问题的学术文献进行了简要的分类综述,包括简要介绍基于建模的计算方法,以研究空间配置对人类行为的基本影响。此外,本文还提出了一种对空间布局进行人体工程学评估的计算方法,该方法明确允许对建筑环境中的可达性和可见性进行综合分析。这种方法的要点是将空间配置概念化为栅格化(体素化)的二维流形可步行地形,其体素具有三维视野,从而将可达性和可见性的模拟和分析统一起来。论文阐述了这种空间表示法如何为空间人体工程学研究提供各种计算查询、分析和模拟实验。最后,论文描绘了与空间人体工程学研究和评估相关的计算建模方法,并指出了未来对各类探索、生成和关联模型进行研究的途径,以便在空间尺度上对人体工程学问题进行事前和事后评估。
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