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The structural performance of arches made of few vossoirs with dry-joints

机译:很少有干缝的拱形结构的拱形结构性能

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摘要

This work approaches the structural performance of masonry arches that have a small ratio between number of vossoirs and span length. The aim of this research is to compare and validate three different methods of analysis (funicular limit analysis F.L.A., kinematic limit analysis K.L.A. and plane stress Finite Element Analysis F.E.A.) with an experimental campaign. 18 failure tests with arches of different shapes and boundary conditions have been performed. The basic failure mechanism was the formation of enough hinges in the geometry. Nevertheless, in few cases, sliding between vossoirs also played a relevant influence. Moreover, few arches didn't reach the collapse. The FLA and KLA didn't find a solution close to the experimental values for some of the tests. The low number of vossoirs and joints become a drawback for an agreement between kinematic mechanism, equilibrium of forces and geometry constraints. FLA finds a lower bound whereas KLA finds an upper bound of the ultimate load of the arch. FEA is the most reliable and robust method and it can reproduce most of the mechanism and ultimate loads. However, special care is required in the definition of boundary conditions for FEA analysis. Scientific justification of the more suitability of numerical methods in front of classic methods at calculating arches with a few vossoirs is the main original contribution of the paper.
机译:这项工作接近了砌体拱的结构性能,砌体拱的体积和跨度之间的比率很小。这项研究的目的是通过实验活动来比较和验证三种不同的分析方法(漏斗极限分析F.L.A.,运动极限分析K.L.A.和平面应力有限元分析F.E.A.)。使用不同形状和边界条件的拱门进行了18次破坏测试。基本的失效机制是在几何结构中形成足够的铰链。然而,在极少数情况下,各大区之间的滑动也产生了相关的影响。此外,很少有拱门没有倒塌。对于某些测试,FLA和KLA找不到接近实验值的解决方案。体积和接头数量少成为运动机理,力平衡和几何约束之间达成一致的缺点。 FLA找到拱的极限荷载的下限,而KLA找到拱的极限荷载的上限。 FEA是最可靠,最可靠的方法,它可以重现大多数机构和极限载荷。但是,在边界条件的定义中需要特别注意以进行有限元分析。科学的证明数值方法在经典方法之前更适合在计算具有少量Vossoir的拱门时进行科学论证,这是本文的主要原始贡献。

著录项

  • 来源
    《Structural Engineering and Mechanics》 |2012年第6期|775-799|共25页
  • 作者单位

    Department of Strength of Materials and Engineering Structures, Universitat Politecnica de Catalunya. Barcelona-Tech., ETSEIAT Campus Terrassa, c/Colom, 11, 08222 Terrassa, Spain;

    Department of Strength of Materials and Engineering Structures, Universitat Politecnica de Catalunya. Barcelona-Tech., ETSEIAT Campus Terrassa, c/Colom, 11, 08222 Terrassa, Spain;

    Department of Strength of Materials and Engineering Structures, Universitat Politecnica de Catalunya. Barcelona-Tech., ETSEIAT Campus Terrassa, c/Colom, 11, 08222 Terrassa, Spain;

  • 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

    dry-joint arches; collapsing mechanism; experimental testing; FEA simulation; funicular analysis; kinematic analysis;

    机译:干节拱门;崩溃机制实验测试;FEA仿真;缆索分析运动学分析;

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