首页> 外文期刊>Journal of Computing in Civil Engineering >IFC-Based Framework to Move beyond Individual Building Elements toward Configuring a Higher Level of Prefabrication
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IFC-Based Framework to Move beyond Individual Building Elements toward Configuring a Higher Level of Prefabrication

机译:基于IFC的框架将超越单个建筑元素,从而配置更高级别的预制件

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摘要

Prefabrication is a form of industrialization that transfers some stages of the construction project from fields to an off-site production facility. The most widely used form of prefabrication in construction is the use of prefabricated individual building elements in which a particular part or form is repeated many times. However, the benefits to the construction project may be increased by moving beyond prefabrication of individual building elements toward configuring a higher level of prefabrication. In this paper, an industry foundation class (IFC)-based system is developed to configure groupings of precast elements for a prefabricated building to minimize the total number of components so as to reduce the production, transportation, and installation cost. The framework uses three-dimensional computer-aided design (3D CAD) software that is compatible with IFC. Geometrical and topological relationships of elements are extracted from IFC and modeled as a graph data model (GDM). The system performs analysis on the graph model based on the attributes of the building elements to generate all possible configurations for precasting. Constructability rules are applied to reduce the solutions to feasible configurations. The functionality of the developed framework is verified by considering an illustrative example of a residential building. Results showed that applying the new configurations of precast components can contribute up to 15% reduction in the total cost compared with the traditional elemental approach.
机译:预制是一种工业化形式,将建设项目的某些阶段从田地转移到异地生产设施。在建筑中使用最广泛的预制形式是使用预制的单个建筑构件,其中特定的部分或形式重复多次。但是,通过从预制各个建筑构件的预制过渡到配置更高级别的预制,可以增加对建设项目的好处。在本文中,开发了一种基于行业基础类别(IFC)的系统,该系统可以为预制建筑物配置预制构件的分组,以最大程度地减少组件总数,从而减少生产,运输和安装成本。该框架使用与IFC兼容的三维计算机辅助设计(3D CAD)软件。从IFC中提取元素的几何和拓扑关系,并将其建模为图形数据模型(GDM)。系统根据建筑元素的属性对图形模型进行分析,以生成所有可能的配置以进行预制。应用可构造性规则以减少对可行配置的解决方案。通过考虑住宅建筑的说明性示例来验证所开发框架的功能。结果表明,与传统的基本方法相比,采用新的预制组件配置可以使总成本降低15%。

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