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The effects of construction related costs on the optimization of steel frames

机译:施工相关成本对钢框架优化的影响

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This paper presents a computational study that explores the design of rigid steel frames by considering construction related costs. More specifically, two different aspects are investigated in this study focusing on the effects of (a) reducing the number of labor intensive rigid connections within a frame of given geometric layout, and (b) reducing the number of different member section types used in the frame. A genetic algorithm based optimization framework searches design space for these objectives. Unlike some studies that express connection cost as a factor of the entire frame weight, here connections and their associated cost factors are explicitly represented at the member level to evaluate the cost of connections associated with each beam. In addition, because variety in member section types can drive up construction related costs, its effects are evaluated implicitly by generating curves that show the trade off between cost and different numbers of section types used within the frame. Our results show that designs in which all connections are considered to be rigid can be excessively conservative: rigid connections can often be eliminated without any appreciable increase in frame weight, resulting in a reduction in overall cost. Eliminating additional rigid connections leads to further reductions in cost, even as frame weight increases, up to a certain point. These complex relationships between overall cost, rigid connections, and member section types are presented for a representative five-story steel frame.
机译:本文提出了一项计算研究,该研究通过考虑与施工相关的成本来探索刚性钢框架的设计。更具体地说,本研究研究了两个不同方面,其重点是(a)减少给定几何布局的框架内的劳动密集型刚性连接的数量,以及(b)减少用于该结构的不同构件截面类型的数量的影响。帧。基于遗传算法的优化框架在设计空间中搜索这些目标。与某些将连接成本表示为整个框架重量的因素的研究不同,此处的连接及其相关的成本因数在成员级别上明确表示,以评估与每个梁相关的连接成本。此外,由于成员截面类型的多样性会增加与施工相关的成本,因此通过生成曲线来隐式评估其效果,这些曲线显示了成本与框架中使用的不同截面类型数量之间的折衷。我们的结果表明,所有连接都被认为是刚性的设计可能过于保守:刚性连接通常可以消除,而框架重量却没有任何明显增加,从而降低了总体成本。消除额外的刚性连接可进一步降低成本,即使框架重量增加到一定程度也是如此。针对具有代表性的五层钢框架,提出了总体成本,刚性连接和构件截面类型之间的这些复杂关系。

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