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The effect of vertical ground movement on masonry walls simulated through an elastic-plastic interphase meso-model: a case study

机译:通过弹塑性相间细观模型模拟垂直地面运动对砌体墙的影响:一个案例研究

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摘要

The present paper proposes an interphase model for the simulation of damage propagation in masonry walls in the framework of a mesoscopic approach. The model is thermodynamically consistent, with constitutive relations derived from a Helmholtz free potential energy. With respect to classic interface elements, the internal stress contribute is added to the contact stresses. It is considered that damage, in the form of loss of adhesion or cohesion, can potentially take place at each of the two blocks-mortar physical interfaces. Flow rules are obtained in the framework of the Theory of Plasticity, considering bilinear domains of 'Coulomb with tension cut-off' type. The model aims to be a first research step to solve the inverse problem of damage propagation in masonry generated by vertical ground movements, in order to ex-post identify the cause of a visible damage. The constitutive model is written in a discrete form for its implementation in a research-oriented finite element program. The response at the quadrature point is analyzed first. Then, the model is validated through comparisons with experimental results and finally employed to simulate the failure occurred in a wall of an ancient masonry building, where an arched collapse took place due to a lowering of the ground level under part of its foundation.
机译:本文提出了一种介观模型,用于在介观方法框架下模拟砌体墙中的损伤传播。该模型是热力学一致的,具有从亥姆霍兹自由势能得出的本构关系。对于经典的界面元素,内部应力会增加到接触应力中。据认为,损坏可能以粘合或内聚力损失的形式发生在两个嵌段砂浆物理界面的每一个上。流动规则是在可塑性理论的框架内获得的,其中考虑了“带张力截止的库仑”类型的双线性域。该模型旨在作为第一步研究,以解决垂直地面运动所产生的砌体中的损伤传播反问题,以便事后确定可见损伤的原因。本构模型以离散形式编写,以便在面向研究的有限元程序中实施。首先分析正交点的响应。然后,通过与实验结果的比较来验证该模型,并最终将其用于模拟在古代砖石建筑的墙壁中发生的破坏,在该墙壁中,由于其基础的一部分降低了地面,从而导致了拱形坍塌。

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