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BIM-Based 4D Simulation to Improve Module Manufacturing Productivity for Sustainable Building Projects

机译:基于BIM的4D仿真可提高可持续建筑项目的模块制造效率

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Modular construction methods, where products are manufactured beforehand in a factory and then transported to the site for installation, are becoming increasingly popular for construction projects in many countries as this method facilitates the use of the advanced technologies that support sustainability in building projects. This approach requires dual factory–site process management to be carefully coordinated and the factory module manufacturing process must therefore be managed in a detailed and quantitative manner. However, currently, the limited algorithms available to support this process are based on mathematical methodologies that do not consider the complex mix of equipment, factories, personnel, and materials involved. This paper presents three new building information modeling-based 4D simulation frameworks to manage the three elements—process, quantity, and quality—that determine the productivity of factory module manufacturing. These frameworks leverage the advantages of 4D simulation and provide more precise information than existing conventional documents. By utilizing a 4D model that facilitates the visualization of a wide range of data variables, manufacturers can plan the module manufacturing process in detail and fully understand the material, equipment, and workflow needed to accomplish the manufacturing tasks. Managers can also access information about material quantities for each process and use this information for earned value management, warehousing/storage, fabrication, and assembly planning. By having a 4D view that connects 2D drawing models, manufacturing errors and rework can be minimized and problems such as construction delays, quality lapses, and cost overruns vastly reduced.
机译:在许多国家,模块化的建筑方法使产品预先在工厂制造然后运输到现场进行安装,这种方法在许多国家的建筑项目中变得越来越流行,因为这种方法促进了支持建筑项目可持续性的先进技术的使用。这种方法要求仔细地协调工厂-现场双重过程管理,因此必须以详细和定量的方式管理工厂模块的制造过程。但是,目前,可用于支持该过程的有限算法基于数学方法,这些数学方法未考虑设备,工厂,人员和材料的复杂混合。本文提出了三个基于新建筑信息建模的4D模拟框架,用于管理决定工厂模块制造生产率的三个要素(过程,数量和质量)。这些框架利用了4D模拟的优势,并提供了比现有常规文档更精确的信息。通过利用有助于可视化各种数据变量的4D模型,制造商可以详细计划模块的制造过程,并充分了解完成制造任务所需的材料,设备和工作流程。管理人员还可以访问有关每个过程的物料数量的信息,并将该信息用于挣值管理,仓储/存储,制造和装配计划。通过具有连接2D工程图模型的4D视图,可以最大程度地减少制造错误和返工,并大大减少了施工延迟,质量下降和成本超支等问题。

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