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Seismic Response Of Masonry Plane Walls: A Numerical Study On Spandrel Strength

机译:砌体平面墙的地震反应:施工强度的数值研究

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The paper reports the results of a numerical investigation on masonry walls subjected to in-plane seismic loads. This research aims to verify the formulae of shear and flexural strength of masonry spandrels which are given in the recent Italian Standards [1]. Seismic pushover analyses have been carried out using finite element models of unreinforced walls and strengthened walls introducing reinforced concrete (RC) beams at the floor levels. Two typologies of walls have been considered distinguished for the height to length ratio h/l of the spandrels: a) short beams (h/l = 1.33) and b) slender beams (h/l = 0.5). Results obtained for the unreinforced and the strengthened walls are compared with equations for shear and flexural strength provided in Standards [1]. The numerical analyses show that the reliability of these equations is at least questionable especially for the prediction of the flexural strength. In the cases in which the axial force has not been determined by the structural analysis, Standards [1] seems to overestimate the flexural strength of short spandrels both for the unreinforced and the strengthened wall.
机译:本文报告了对面内地震载荷进行的砌体墙体的数值研究结果。本研究旨在验证最近的意大利标准的砌体碳卷曲的剪切和弯曲强度的公式[1]。已经采用了岩土电压型材的有限元模型进行了地震推动分析,并加强了在地板上引入钢筋混凝土(RC)梁的加强壁。已经考虑了两个墙壁的两种类型的墙壁的高度与弯曲的高度H / L的高度:a)短梁(h / l = 1.33)和b)细长梁(h / l = 0.5)。与抗剪切和抗弯强度的方程相比,获得了不再采用的墙壁的结果[1]。数值分析表明,这些等式的可靠性至少可疑,特别是对于预测弯曲强度。在轴向力未通过结构分析确定的情况下,标准[1]似乎高估了短弯曲的弯曲强度,两者都是不合因和加强的墙壁。

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