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On the statics of curved masonry structures via numerical models

机译:基于数值模型的曲线砌体结构静力学

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Purpose This paper aims to review recent literature results on the equilibrium problem and the strengthening design of masonry vaults. Design/methodology/approach A Lumped Stress Method (LSM) is considered within the Heyman’s safe theorem, based on the definition of thrust surface of a masonry curved structure. In particular, the static problem of the vault is formulated by introducing a membrane continuous of the studied masonry structure to associate with a spatial truss through a nonconforming variational approximation of the thrust surface and membrane stress potential. A tensegrity approach based on a minimal mass design strategy, different strengths in tension and compression of the material is discussed within the strengthening strategy of masonry vaults. Findings The numerical results have highlighted the efficacy of the two numerical approaches to assess the vulnerability of existing structures and design optimal strengthening interventions of these structures. Originality/value The presented models can represent fast and useful tools to assess the vulnerability of existing structures and design optimal strengthening interventions with composite materials of these structures.
机译:目的本文旨在回顾有关平衡问题和砌体金库加固设计的最新文献结果。设计/方法/方法基于砌体弯曲结构推力面的定义,在海曼安全定理中考虑了集中应力法(LSM)。尤其是,通过引入所研究的砖石结构的连续膜,通过推力面和膜应力势的不协调变化逼近与空间桁架相关联,来解决穹顶的静态问题。在砌体穹顶的加固策略中,讨论了基于最小质量设计策略,材料在拉伸和压缩方面的不同强度的拉伸方法。研究结果数值结果突出了两种数值方法在评估现有结构的脆弱性和设计这些结构的最佳加固措施方面的有效性。原创性/价值提出的模型可以代表快速而有用的工具,用于评估现有结构的脆弱性,并使用这些结构的复合材料设计最佳的加固措施。

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