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Numerical Investigations On The Seismic Behaviour Of Confined Masonry Walls

机译:狭窄砌体墙体地震行为的数值研究

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In the last century, severe earthquakes highlighted the seismic vulnerability of unreinforced masonry buildings. Many technological innovations have been introduced in time in order to improve resistance, ductility, and dissipation properties of this type of constructions. The most widely diffused are reinforced masonry and confined masonry. Damage observation of recent earthquakes demonstrated the effectiveness of the response of confined masonry structures to seismic actions. In general, in this type of structures, reinforced concrete beams and columns are not main structural elements, however, they have the following functions: to confine masonry in order to increase its ductility; to bear tensile stresses derived from bending; to contrast the out-of-plane overturning of masonry panels. It is well evident that these functions are as much effectively performed as the connection between masonry and reinforced concrete elements is good (for example by mean of local interlocking or reinforcements). Confined masonry structures have been extensively studied in the last decades both from a theoretical point of view and by experimental tests Aims of this paper is to give a contribution to the understanding of the seismic behaviour of confined masonry walls by means of numerical parametrical analyses. There latter are performed by mean of the finite element method; a nonlinear anisotropic constitutive law recently developed for masonry is adopted. Comparison with available experimental results are carried out in order to validate the results. A comparison between the resistance obtained from the numerical analyses and the prevision provided by simplified resistance criteria proposed in literature and in codes is finally provided.
机译:在上个世纪,严重地震突出了未原始的砌体建筑的地震脆弱性。已经及时引入了许多技术创新,以改善这种结构的抵抗力,延展性和耗散性能。最广泛的扩散是加强砌体和狭窄的砌体。近期地震的损伤观察证明了狭窄的砌体结构对地震行动的响应的有效性。通常,在这种类型的结构中,钢筋混凝土梁和柱不是主要的结构元件,然而,它们具有以下功能:限制砌体以增加其延展性;承受源于弯曲的拉伸应力;对比砌体面板的外平面翻转。很明显,这些功能与砖石和钢筋混凝土元件之间的连接好(例如通过局部互锁或增强件的平均值)一样多。狭窄的砌体结构在过去几十年中,从理论的观点来看,通过实验测试,本文的目的是通过数值参数分析给出对狭窄的砌体壁的地震行为的贡献。后者通过有限元方法的平均值进行;采用最近为砌体制定的非线性各向异性本构法。进行可用实验结果的比较,以验证结果。最终提供了从数值分析中获得的电阻与文献中提出的简化电阻标准提供的电阻之间的比较。

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