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Evaluation of optimal lateral resisting systems for tall buildings subject to horizontal loads

机译:高层载荷对高层建筑的最佳横向抗蚀系统的评价

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The tendency of modern designs towards optimal structures often leads to the lightest and best performing choice among a large set of design alternatives. In a similar scenario, the introduction of automated tools to further guide designers in achieving efficient solutions has been a recurrent topic for mechanical and structural engineers, over the past decades. Nowadays, topology optimization is considered a powerful preliminary design tool to determine the optimal material distribution in a design domain, i.e. the most effective configuration that satisfies a given set of prescribed constraints while reducing the consumption of structural material. Among different applications in the field of Civil Engineering, this work focuses on the definition of optimal layouts of lateral resisting systems for multi-storey steel building frameworks subject to lateral loads using topology optimization techniques. The objective of the research is to illustrate the benefits deriving from the introduction of automated routines within the preliminary design stage and establish reliable guidelines for performing accurate and objective optimization procedures. Since the optimal material distribution follows the load flow within the structure, optimal topologies are especially sensitive to the alteration of support and loading conditions: different loading scenarios naturally lead to distinct optimal layouts. In order to avoid the loss of objectivity and preserve the optimality of the results, the effects that preliminary modelling and loading assumptions produce on final layouts are investigated. Numerical applications to high-rise building models are presented and discussed.
机译:现代设计对最佳结构的趋势往往导致大量设计替代品中的最轻和最佳表现。在类似的场景中,在过去的几十年中,在实现高效解决方案中进一步指导设计人员的自动化工具在实现有效的解决方案中是一种反复性主题。如今,拓扑优化被认为是一种强大的初步设计工具,可以确定设计域中的最佳材料分布,即满足特定规定约束的最有效配置,同时降低了结构材料的消耗。在土木工程领域的不同应用中,这项工作侧重于使用拓扑优化技术对多层钢建筑框架进行多层钢制建筑框架的最佳布局的定义。该研究的目的是说明在初步设计阶段内引入自动化例程的益处,并建立了用于执行准确和客观优化程序的可靠指导。由于最佳材料分布遵循结构内的负载流动,因此最佳拓扑对支持和装载条件的改变特别敏感:不同的加载方案自然导致不同的最佳布局。为了避免差异损失并保持结果的最优性,研究了初步建模和装载假设在最终布局上产生的影响。提出和讨论了高层建筑模型的数值应用。

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