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THE INTEGRATION OF A SCAN-TO-HBIM PROCESS IN BIM APPLICATION: THE DEVELOPMENT OF AN ADD-IN TO GUIDE USERS IN AUTODESK REVIT

机译:在BIM应用中的扫描到HBIM进程的集成:Add-in and-and的开发在Autodesk Revit中引导用户

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摘要

In recent years, the generative process of building information modeling (BIM) digital models oriented to the digitisation of heritage buildings has been supported by the development of new modeling tools, able to integrate the point cloud data produced by laser scanning and digital photogrammetry in major modeling software applications such as Autodesk Revit and Graphisoft Archicad. Architectural and structural elements of churches, castles, and historical monuments such as complex vaults, arches, decorations and ornaments, irregular walls with a variable section and wall stratigraphy require higher levels of detail (LOD) and information (LOI) than new buildings. Consequently, the structure of a BIM model oriented to represent heritage buildings (HBIM) required the definition of a new digital process capable of converting the traditional techniques to the generation of 'unique' digital models able to connect different type of information. Consequently, the generation of 'new' 3D objects able to follow the constructive logic of the detected artefact has required the establishment of new grades of generation (GOG) and accuracy (GOA) to reduce the time and cost of the scan-to-BIM process. The main challenge of this research was the integration of these new modeling requirements in BIM software through the development of an add-in for one of the most used BIM software (Autodesk Revit). Through the generation of the complex vaulted system of the Basilica of Collemaggio (L’Aquila, Italy) and one of the most famous monuments of northern Italy (Arch of Peace in Milan, Italy), the following research shows how it was possible to support users in the HBIM generation, reducing the modeling impact of complex shapes from point cloud data and increasing information sharing for different BIM-based analysis, disciplines and users.
机译:近年来,建筑信息建模(BIM)数字模型的生成过程取向了遗产建筑的数字化,通过开发新的建筑工具,能够集成主要的激光扫描和数码摄影测量产生的点云数据建模软件应用程序,如Autodesk Revit和Graphisoft Archicad。教堂,城堡和历史纪念碑等建筑和结构元素,如复杂的拱顶,装饰品和装饰品,带有可变部分和墙壁地层的不规则墙需要比新建筑物更高的细节(LOD)和信息(LOI)。因此,面向遗传建筑物(HBIM)的BIM模型的结构需要定义一种能够将传统技术转换为能够连接不同类型信息的“独特”数字模型的传统技术的新数字过程。因此,能够遵循检测到的人工法的建设性逻辑的“新”3D对象的生成已经要求建立新的生成等级(GOG)和精度(GOA),以减少扫描到BIM的时间和成本过程。本研究的主要挑战是通过开发一个最常用的BIM软件(Autodesk Revit)的加载项,整合这些新的建模要求。通过生成Collmaggio(L'Aquila,Italy)和意大利北部最着名的纪念碑(米兰,意大利和平拱门)的复杂拱形系统,以下研究显示了如何支持用户在HBIM生成中,从点云数据和增加基于BIM的分析,学科和用户的信息共享增加了复杂形状的建模影响。

著录项

  • 作者

    F. Banfi;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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