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A Genetic Algorithm adaptive homogeneous approach for evaluating settlement-induced cracks in masonry walls

机译:一种遗传算法适应性均匀方法,用于评估砌体墙壁沉降诱导的裂缝

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摘要

This paper presents a Genetic Algorithm adaptive homogeneous approach aiming at representing the crack patterns induced by ground settlements on masonry walls. This type of damage is a critical issue since it affects all masonry buildings, including those that are not located in seismic-prone areas. The GA-adaptive homogeneous approach here proposed is meant as a tool that overcomes the usual high computational costs requested by the traditional heterogeneous and homogeneous approaches. Here, the considered masonry wall is discretized into a low number of 2D polygonal elements; its displacement field is then determined through a linear programming problem. The actual position of cracks induced by the applied settlement is identified by modifying the initial mesh through an iterative mesh adaptation procedure performed with a Genetic Algorithm (GA); the iterations are carried on until the absolute minimum of the work performed by the reaction forces is attained. In this way, the computational effort needed for identifying the actual crack patterns is dramatically decreased due to the very few unknowns of the problem. The reliability of the GA-adaptive homogeneous approach here proposed is validated against selected benchmarks that come from experimental and numerical results, and is also compared with the traditional heterogeneous and homogeneous approaches. In all the three benchmarks, the GA-adaptive approach offers a satisfying computational efficiency and identifies the actual crack patterns with good accuracy, despite the low number of elements employed in the discretization of the masonry wall. This may pave the way for a broader use of this approach in the analysis of complex masonry structures affected by settlement-induced damages.
机译:本文提出了一种遗传算法自适应均匀方法,其旨在代表砌体墙壁地面沉淀诱导的裂缝图案。这种类型的伤害是一个关键问题,因为它会影响所有砌体建筑物,包括那些不在地震易受领域的砌体建筑物。这里提出的GA-Adaptive均匀方法是克服了传统的异构和均匀方法所要求的通常高计算成本的工具。这里,被认为的砌体壁被离散化成少量的2D多边形元件;然后通过线性编程问题确定其位移场。通过通过用遗传算法(GA)执行的迭代网格适应程序来修改初始网格来识别由所应用的沉降引起的裂缝的实际位置;迭代进行,直到实现反应力所执行的绝对最小值。通过这种方式,由于问题的未知数,识别实际裂纹模式所需的计算工作显着降低。这里提出的GA-Adaptive均匀方法的可靠性针对来自实验性和数值结果的所选基准验证,并且也与传统的异质和均匀方法进行了比较。在所有三个基准测试中,GA-Adaptive方法提供了满足的计算效率,并且尽管在砖石壁的离散化中采用的元件数量较少,但是良好的精度具有良好的精度。这可以在分析受沉降造成损伤影响的复杂砌体结构的分析中铺平了这种方法的更广泛使用方法。

著录项

  • 来源
    《Engineering Structures》 |2020年第15期|111073.1-111073.21|共21页
  • 作者单位

    Tech Univ Milan Dept Architecture Built Environm & Construct Engn Piazza Leonardo Da Vinci 32 I-20133 Milan Italy;

    Tech Univ Milan Dept Architecture Built Environm & Construct Engn Piazza Leonardo Da Vinci 32 I-20133 Milan Italy;

    Univ Ferrara Dept Architecture Via Quartieri 8 I-44121 Ferrara Italy;

    Tech Univ Milan Dept Architecture Built Environm & Construct Engn Piazza Leonardo Da Vinci 32 I-20133 Milan Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Masonry structures; Settlements; Rigid blocks; Genetic algorithm; Adaptive mesh; Limit analysis;

    机译:砌体结构;定居点;刚性块;遗传算法;自适应网格;限制分析;

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