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Optimal FRP reinforcement of masonry walls out-of-plane loaded: A combined homogenization-topology optimization approach complying with masonry strength domain

机译:平面外砌体墙的最佳FRP加固:符合砌体强度域的组合均质化-拓扑优化方法

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摘要

A novel approach for the rational arrangement of fiber reinforcements on masonry structures based on topology optimization is presented. Following previous experiences on the automatic achievement of strut-and-tie models in reinforced concrete structures, the minimization of the strain energy can be implemented to derive optimal layouts of reinforcement for any structural element. To cope with the brickwork limited strength, the optimal problem can be conveniently reformulated as the minimization of the amount of reinforcement that is required to keep tensile stresses in any masonry element below a prescribed threshold. The out-of-plane macroscopic elastic properties and strength domain of brickwork are derived through an original homogenization approach, which relies upon the discretization of 1/4 of any unit cell by six constant moment elements. Thanks to the limited number of variables involved, fast evaluations of masonry macroscopic strength domains can be obtained. This criterion is implemented into the multi-constrained discrete formulation of the topology optimization algorithm, to locally control the internal actions field over the design domain. Topology optimization is then applied to the investigation of the optimal reinforcement of plain and windowed panels, comparing the conventional energy-based method and the proposed stress-based approach.
机译:提出了一种基于拓扑优化的砌体结构上纤维增强筋合理布置的新方法。根据以前在钢筋混凝土结构中自动完成拉杆-拉杆模型的经验,可以实现应变能的最小化,以得出任何结构元件的最佳钢筋布置。为了应对砖砌有限的强度,可以方便地重新定义最佳问题,以使将任何砌体中的拉应力保持在规定阈值以下所需的加强筋数量最小化。砖砌体的平面外宏观弹性和强度域是通过原始的均质化方法得出的,该方法依赖于六个单位矩元素将任何单元格的1/4离散化。由于涉及的变量数量有限,因此可以对砌体宏观强度域进行快速评估。将该标准实施到拓扑优化算法的多约束离散公式中,以在设计域上本地控制内部动作字段。然后将拓扑优化应用于平窗板的最佳加固研究,将传统的基于能量的方法与所提出的基于应力的方法进行比较。

著录项

  • 作者

    Bruggi M.; Milani G.;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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