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Building Information Modeling for Cultural Heritage: The Management of Generative Process for Complex Historical Buildings

机译:文化遗产建设信息建模:复杂历史建筑的生成过程管理

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Building Information Modeling (BIM) enhances the sharing of information during the traditional process for new construction, but most of the time, it requires high levels of knowledge management for the historical digital model (H-BIM). The innovation in the Digital Cultural Heritage (DCH) domain is supported by the development of Information and Communications Technologies (ICT) and modern tools that are able to transmit morphological characteristics of the buildings in all their uniqueness. The latest research in the field of H-BIM shows a significant emergence of innovative methods and management initiatives for the generation of complex historical elements, leading to the confrontation of the paradigm of regularity (simple geometric shapes) with the new paradigm of complexity (historical building elements). This paper proves the benefits of the BIM for project management of the Centre Block of the Canadian Parliament in Ottawa, Ontario Canada, and shows the results obtained by the introduction of Advanced Modeling Techniques (AMT) during the generative process, reducing time and cost for the creation of the complex architectural and structural elements. The uniqueness of the forms of historical buildings is a real value to be transmitted throughout the building's lifecycle with high Levels of Detail (LOD). Proper management of geometric primitives and Non-Uniform Rational Basis Spline (NURBS) models have guaranteed the conversion of spatial data (point clouds) from laser scanning and photogrammetry (geometric survey) into parametric applications. This paper explores the generative process of one of the most complex spaces within The Centre Block building of Parliament Hill - Confederation Hall.
机译:建筑信息建模(BIM)在新建的传统过程中增强信息的共享,但大多数情况下,它需要对历史数字模型(H-BIM)的高水平知识管理。信息和通信技术(ICT)和现代工具的开发支持数字文化遗产(DCH)领域的创新,能够在所有唯一性中传播建筑物的形态特征。 H-BIM领域的最新研究表明,创新的方法和管理倡议的创新方法和管理倡议的重大出现,导致规律性范式(简单的几何形状)与复杂性的新范式的对抗(历史建筑元素)。本文证明了BIM在加拿大渥太华渥太华加拿大议会中心块的项目管理的好处,并显示了在生成过程中引入先进的建模技术(AMT)获得的结果,减少了时间和成本建立复杂的建筑和结构元素。历史建筑形式的独特性是在整个建筑物的生命周期中传播的真实价值,具有高水平的细节(LOD)。适当管理几何基元和非均匀理性基准条样条曲线(NURBS)模型确保将空间数据(点云)从激光扫描和摄影测量(几何调查)转换为参数应用。本文探讨了议会山区 - 联邦大厅中心区块建设中最复杂的空间之一的生成过程。

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