Integrating Computational Design to Improve the Design Workflow of Modular Construction

T. Greenough, Matthew Smith, A. Mariash
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引用次数: 2

Abstract

The construction industry’s productivity has stagnated since the 1960s while in the same period, manufacturing and technology industries have seen vast improvements. The construction industry is coming under increased pressure to provide better value through improved quality and performance and as a result developers and constructors are looking to alternative forms of construction. In a process that borrows concepts from the manufacturing and technology sectors, such as automation and 3D modelling, Prefabricated Volumetric Construction (modular construction) is a highly versatile approach with the potential to deliver substantial cost savings, faster project delivery times, higher quality construction with less waste and emissions, and an increase in worker safety. This paper will explore the integration of computational design into the design workflow of modular construction through several project examples. The following topics will be covered: creation and assembly of parametric modules in the Revit Building Information Model (BIM) software, using the visual programming tool Dynamo; the linkage of the BIM to the analytical model; and the extraction of results and the manipulation and display of data using Grasshopper, a visual programming language and environment plugin, for Rhinoceros a 3D modeler. This integration has been found to reduce the time required to develop the building model, the drawings, the analytical model and complete the design while improving the consistency and accuracy of all.
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集成计算设计改进模块化建筑设计流程
自20世纪60年代以来,建筑业的生产率一直停滞不前,而在同一时期,制造业和科技行业有了巨大的进步。建筑行业正面临越来越大的压力,要求通过提高质量和性能来提供更好的价值,因此开发商和建筑商正在寻找其他建筑形式。在这个过程中,借鉴了制造和技术领域的概念,如自动化和3D建模,预制体积结构(模块化结构)是一种高度通用的方法,有可能节省大量成本,加快项目交付时间,提高施工质量,减少浪费和排放,并提高工人的安全性。本文将通过几个工程实例探讨将计算设计融入模块化建筑的设计工作流程。以下主题将涵盖:创建和参数模块的Revit建筑信息模型(BIM)软件组装,使用可视化编程工具Dynamo;BIM与分析模型的联动;以及使用Grasshopper(一种可视化编程语言和环境插件)提取结果、操作和显示数据,用于Rhinoceros 3D建模器。这种整合减少了开发建筑模型、图纸、分析模型和完成设计所需的时间,同时提高了所有这些的一致性和准确性。
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