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Automated clash-free optimization of steel reinforcement in RC frame structures using building information modeling and two-stage genetic algorithm

机译:使用建筑信息建模和两级遗传算法,RC帧结构中钢筋自动化钢筋自动化优化

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摘要

Steel reinforcement design in practices is performed at individual member level with little considerations of member-member intersections, which results in reinforcement overlaps and congestion. This paper presents a new approach based on building information modeling (BIM) and two-stage genetic algorithms (GA) to automatically optimize the clash-free steel reinforcement design. The approach considers reinforcement overlaps and congestion in beam-column joints and extracts 3D spatial information from design BIM models to underpin the automated clash-free optimization. The beam-column intersections are classified into appropriate categories such as T and cross joints, following by the generation of a clash-free reinforcement layout using the first-stage GA. Given the clash-free layout, the second-stage optimization is conducted using a hybrid GA and Hooke & Jeeves algorithm to calculate the optimal diameter combination of steel reinforcements (with minimum provided steel reinforcement area). An example is provided to illustrate the proposed BIM and two-stage GA based optimization method.
机译:在实践钢加固设计在与成员国成员交叉的小因素,这导致钢筋重叠和拥塞个人会员级别执行。本文提出了一种基于建筑信息模型(BIM)和两级遗传算法(GA),自动优化无冲突钢加固设计的新方法。该方法考虑加强件重叠和拥塞在梁柱和提取从3D设计BIM模型的空间信息,以支持自动化自由冲突优化。梁柱相交处被分类成适当的类别,例如T和十字联轴器,通过使用第一级GA无冲突加固布局的生成以下。鉴于游离冲突布局中,第二阶段优化使用进行了混合GA和胡克&Jeeves的算法来计算钢筋的最佳直径组合(具有最小提供钢筋区域)。一个例子被提供以示出所提出的BIM和两阶段基于GA优化方法。

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