Cost Optimization of Reinforced Concrete Section According to Flexural Cracking

P. Jelušič
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Abstract

A series of distributed flexural cracks develop in reinforced concrete flexural elements under the working load. The control of cracking in reinforced concrete is an important issue that must be considered in the design of reinforced concrete structures. Crack width and spacing are influenced by several factors, including the steel percentage, its distribution in the concrete cross-section, the concrete cover, and the concrete properties. In practice, however, a compromise must be made between cracking, durability, and ease of construction and cost. This study presents the optimal design of a reinforced concrete cross-section, using the optimization method of mixed-integer nonlinear programming (MINLP) and the Eurocode standard. The MINLP optimization model OPTCON was developed for this purpose. The model contains the objective function of the material cost considering the crack width requirements. The crack width requirements can be satisfied by direct calculation or by limiting the bar spacing. Due to the different crack width requirements, two different economic designs of reinforced concrete sections were proposed. The case study presented in this study demonstrates the value of the presented optimization approach. A direct comparison between different methods for modelling cracking in reinforced concrete cross-sections, which has not been done before, is also presented.
基于受弯开裂的钢筋混凝土截面成本优化
钢筋混凝土受弯构件在荷载作用下出现了一系列分布的受弯裂缝。钢筋混凝土裂缝的控制是钢筋混凝土结构设计中必须考虑的一个重要问题。影响裂缝宽度和裂缝间距的因素包括钢含量、钢在混凝土截面中的分布、混凝土覆盖层和混凝土性能等。然而,在实践中,必须在开裂、耐久性、易施工性和成本之间做出妥协。本文采用混合整数非线性规划(MINLP)优化方法和欧洲规范标准对某钢筋混凝土截面进行优化设计。为此,开发了MINLP优化模型OPTCON。该模型包含考虑裂缝宽度要求的材料成本目标函数。裂缝宽度要求可以通过直接计算或限制杆距来满足。针对不同的裂缝宽度要求,提出了两种不同的钢筋混凝土截面经济设计方案。本研究的案例研究证明了所提出的优化方法的价值。本文还对钢筋混凝土截面裂缝建模的不同方法进行了直接比较,这是以前从未做过的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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