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Automated optimization of steel reinforcement in RC building frames using building information modeling and hybrid genetic algorithm

机译:利用建筑信息模型和混合遗传算法自动优化钢筋混凝土建筑框架中的钢筋

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Design of steel reinforcement is an important and necessary task for designing reinforced concrete (RC) building structures. Currently, steel reinforcement design is performed manually or semi-automatically using computer software such as ETABS, with reference to building codes. These approaches are time consuming and sometimes error-prone. Recent advances in building information modeling (BIM) technology allow digital 3D BIM models to be leveraged for supporting different types of engineering analyses such as structural engineering design. With the aid of BIM technology, steel reinforcement design could be automated for fast, economical and error-free procedures. This paper presents a BIM-based framework using the developed three-stage hybrid genetic algorithm (GA) for automated optimization of steel reinforcement in RC frames. The methodology framework determines the selection and alignment of steel reinforcement bars in an RC building frame for the minimum steel reinforcement area, considering longitudinal tensile, longitudinal compressive and shear steel reinforcement. The first two stages optimize the longitudinal tensile and longitudinal compressive steel reinforcement while the third stage optimizes the shear steel reinforcement. International design code (BS8110) and buildability constraints are considered in the developed optimization framework. A BIM model in Industry Foundation Classes (IFC) is then automatically created to visualize the optimized steel reinforcement design results in 3D thereby facilitating design communication and generation of construction detailing drawings. A three-storey RC building frame is analyzed to check the applicability of the developed framework and its improvement over current design approaches. The results show that the developed methodology framework can minimize the steel reinforcement area quickly and accurately.
机译:钢筋设计是设计钢筋混凝土(RC)建筑结构的重要且必要的任务。当前,参照建筑规范,使用诸如ETABS之类的计算机软件来手动或半自动地进行钢筋设计。这些方法很耗时,有时容易出错。建筑信息模型(BIM)技术的最新进展允许利用数字3D BIM模型来支持不同类型的工程分析,例如结构工程设计。借助BIM技术,可以自动进行钢筋加固设计,以实现快速,经济和无错误的过程。本文提出了一种基于BIM的框架,该框架使用已开发的三阶段混合遗传算法(GA)来自动优化RC框架中的钢筋。方法框架确定了钢筋混凝土建筑框架中钢筋的最小选择和排列,以考虑最小的钢筋面积,并考虑了纵向拉伸,纵向压缩和剪切钢筋。前两个阶段优化了纵向抗拉钢筋和纵向抗压钢筋,而第三阶段则优化了抗剪钢筋。在已开发的优化框架中考虑了国际设计规范(BS8110)和可构建性约束。然后,将自动创建行业基础分类(IFC)中的BIM模型,以3D形式显示优化的钢筋设计结果,从而促进设计交流和生成施工详图。分析了三层的RC建筑框架,以检查已开发框架的适用性及其对当前设计方法的改进。结果表明,所开发的方法框架可以快速,准确地最小化钢筋面​​积。

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