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The influence of earthquake vertical component on the seismic response of masonry structures

机译:地震垂直分量对砌体结构地震响应的影响

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The seismic behaviour of masonry structures is, as well-known, strongly influenced by axial stresses. During a seismic event, variations in axial loading cause in fact a change, that can be substantial, in the response in the lateral resistance capacity of masonry panels. Moreover, the axial stress can be modified by the vertical component of the seismic input during an event, which can amplify the strength variations, in particular if there is a near-fault excitation. In general, such vertical component is neglected in a traditional design.In this work, the influence of the vertical component of a seismic event is evaluated by measuring the lateral resistance of masonry piers. Such influence is estimated through a cyclic phenomenological model which calculates in an analytical way the lateral strength of a masonry panel on the base of the actual axial loading, reached step-by-step during a non-linear analysis. This model is used to simulate the cyclic behaviour of an unreinforced masonry facade made of 3 piers, having the same section for 2 floors and connected by rigid spandrels. The wall, representative of a typical masonry facade, is subjected to a series of earthquake records, with and without the vertical component of the seismic input. The differences in the responses are quantified through the use of seismic reduction factors, in such a way to satisfy the checking of the piers adopting the current design codes.
机译:众所周知,砌体结构的地震行为受到轴向应力的强烈影响。实际上,在地震事件中,轴向载荷的变化实际上会导致砌体面板的侧向承载力响应发生很大的变化。此外,可以在事件期间通过地震输入的垂直分量来修改轴向应力,这可以放大强度变化,特别是在存在接近故障的激励的情况下。通常,在传统设计中会忽略这种垂直分量。在这项工作中,通过测量砌体墩的侧向阻力来评估地震事件的垂直分量的影响。这种影响是通过循环现象学模型估算的,该模型以分析的方式计算在非线性分析过程中逐步达到的实际轴向载荷的基础上砌体面板的侧向强度。该模型用于模拟由3个墩组成的无钢筋砌体外墙的循环行为,该墩具有2层相同的截面,并由刚性翼d连接。代表典型砌体外墙的墙经受了一系列地震记录,有或没有地震输入的垂直分量。通过使用减震因子来量化响应的差异,从而满足采用当前设计规范的墩的检查。

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