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Automatic structural design by a set-based parametric design method

机译:通过基于集合的参数设计方法进行自动结构设计

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Modern structural design faces new challenges, such as addressing the needs of several stakeholders and satisfying the criteria for achieving sustainability. The traditional design process does not allow resolution of these challenges. The purpose of this project was to investigate the applicability of a Set-Based Parametric Design method to the structural design process of bridges. The focus was on the early design stage, in which the design team evaluates design alternatives against a chosen set of criteria. The main challenge in this stage of design is that the process should be cost- and time-effective while allowing comparison of the different alternatives and their evaluation in terms of the different design criteria. Certainly, structural design is often performed by a discussion between the different stakeholders involved in this process, i.e. the client, contractor, and engineering team. An evaluation of alternatives against criteria requires a more detailed design, which is contradictory to the early design stage when information is scarce. The selected approach was to develop a script that can generate information for decision-making, automate the structural design process, perform common routine design tasks, and control the numerical analysis. The method combined Set-Based Design, Parametric Design, Finite Element Analysis and Multi-Criteria Decision Analysis. Three existing bridges were selected to demonstrate the applicability of the developed method. The method was successfully applied and it was observed that it resulted in bridges that were more efficient in terms of material costs and carbon dioxide equivalent emissions compared with existing bridges. By delaying the decisions and developing the sets of alternatives, various alternatives can be assessed and evaluated, in the design stage, against different sustainability criteria.
机译:现代结构设计面临着新的挑战,例如满足多个利益相关者的需求并满足实现可持续性的标准。传统的设计过程无法解决这些挑战。该项目的目的是研究基于集合的参数设计方法在桥梁结构设计过程中的适用性。重点是在早期设计阶段,在该阶段设计团队将根据一组选定的标准评估设计备选方案。在此设计阶段的主要挑战是该过程应具有成本效益和时间效益,同时允许比较不同的替代方案并根据不同的设计标准进行评估。当然,结构设计通常是由参与此过程的不同利益相关者(即客户,承包商和工程团队)之间的讨论来执行的。根据标准评估替代方案需要更详细的设计,这与信息匮乏的早期设计阶段相矛盾。选择的方法是开发一个脚本,该脚本可以生成决策信息,自动化结构设计过程,执行常见的常规设计任务并控制数值分析。该方法结合了基于集合的设计,参数设计,有限元分析和多准则决策分析。选择了三个现有的桥梁来证明所开发方法的适用性。该方法已成功应用,据观察,与现有桥梁相比,该桥梁所产生的桥梁在材料成本和二氧化碳当量排放方面更为有效。通过延迟决策并开发备选方案集,可以在设计阶段根据不同的可持续性标准评估和评估各种备选方案。

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