• ISSN: 1674-7461
  • CN: 11-5823/TU
  • 主管:中国科学技术协会
  • 主办:中国图学学会
  • 承办:中国建筑科学研究院有限公司

BIMMAKE在钢筋系统性深化中的研究与应用

The Research and Application of BIMMAKE in the Systematic Deepening of Steel Bars

  • 摘要: 当前,CAD转化法或单构件法等传统钢筋翻样方法在可视化及拓展应用上存在局限,Revit二次开发技术又在规范本土化与跨平台数据互通方面能力有限,不能完全满足钢筋工程的实际需求。基于此,本文提出融合预算模型数据与施工算法的三维钢筋优化方法,通过导入复用GTJ预算模型进行一模多用,并利用内置的施工算法规则,综合考虑钢筋的受力、构造及加工逻辑,对钢筋空间排布进行优化,进而在翻样环境中进行精细化编辑,形成基于三维模型的钢筋料单与工程数据,以解决技术手段有限、管控基准缺失及环节缺乏统筹等行业难题,为工程项目管理决策提供参考,从而实现对钢筋成本的精准把控。

     

    Abstract: Currently, traditional steel bar detailing methods such as the CAD conversion method or the single component method have limitations in terms of visualization and extended applications. Additionally, Revit secondary development technology has limited capabilities in terms of standard localization and cross-platform data interoperability, which cannot fully meet the actual needs of steel bar engineering. Based on this, this paper proposes a 3D steel bar optimization method that integrates budget model data and construction algorithms. By introducing and reusing the GTJ budget model for one-mode multi-use, and using the built-in construction algorithm rules, considering the force, structure and processing logic of the steel bar, the spatial arrangement of the steel bar is optimized, and then the refined editing is carried out in the reprofiling environment to form a steel bar sheet and engineering data based on the three-dimensional model. In order to solve the industry problems such as limited technical means, lack of control benchmarks, and lack of overall planning of links, so as to provide reference for project management decision-making. Thus, accurate control of steel costs can be achieved.

     

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