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首页> 外文期刊>International journal of architectural heritage >Simulation of Shake Table Tests on Out-of-Plane Masonry Buildings. Part (VI): Discrete Element Approach
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Simulation of Shake Table Tests on Out-of-Plane Masonry Buildings. Part (VI): Discrete Element Approach

机译:平面砖石建筑物的振动台测试模拟。第(VI)部分:离散元素方法

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摘要

Although many experimental tests and numerical models are available in the literature, the numerical simulation of the seismic response of existing masonry buildings is still a challenging problem. While the nonlinear behavior of masonry structures is reasonably predictable when the out-of-plane behavior can be considered inhibited, when the in-plane and out-of-plane responses coexist and interact, simplified models seem unable to provide reliable numerical predictions. In this article, taking advantage of the experimental tests carried out in a shaking table on two masonry prototypes at LNEC, a macro-element approach is applied for the numerical simulations of their nonlinear response. The adopted approach allows simulating the nonlinear behavior of masonry structures considering the in-plane and out-of-plane responses. Since it is based on a simple mechanical scheme, explicitly oriented to representing the main failure mechanisms of masonry, its computational cost is greatly reduced with respect to rigorous solutions, namely nonlinear FEM approaches. Two modeling strategies are adopted, namely a regular mesh independent from the real texture of the prototypes and a detailed one coherent with the units disposal. The numerical results are discussed and the correlation between the nonlinear static analyses and the dynamic response is provided.
机译:尽管文献中提供了许多实验测试和数值模型,但是对现有砌体建筑的地震响应进行数值模拟仍然是一个具有挑战性的问题。当可以认为平面外行为被抑制时,砌体结构的非线性行为是可以合理预测的,而当平面内和平面外响应共存并相互作用时,简化的模型似乎无法提供可靠的数值预测。在本文中,利用在LNEC的两个砌体原型在振动台上进行的实验测试,将宏单元方法应用于其非线性响应的数值模拟。考虑到平面内和平面外的响应,所采用的方法可以模拟砌体结构的非线性行为。由于它基于简单的机械方案,明确地代表了砌体的主要破坏机理,因此相对于严格的解决方案(即非线性FEM方法),其计算成本大大降低了。采用两种建模策略,即与原型的真实纹理无关的规则网格,以及与单元处理紧密相关的详细网格。讨论了数值结果,并提供了非线性静力分析与动力响应之间的相关性。

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