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首页> 外文期刊>Frattura e Integrita Strutturale >Formulating the in-plane frictional resistances and collapse mechanisms for multi-storey masonry block walls
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Formulating the in-plane frictional resistances and collapse mechanisms for multi-storey masonry block walls

机译:制定多层砌体砌块墙的面内摩擦阻力和坍塌机制

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摘要

In this paper a macro-block model accounting for frictional resistances is presented to assess the lateral strength of a multi-storey masonry block wall. The kinematic approach of limit analysis is used to define the load factor causing the onset of rocking-sliding mechanism under in-plane horizontal loading. A dry frictional contact condition is assumed at the rigid block interfaces, according to the Coulomb's law with non-associated flow rule. The key aspect of the proposed approach is the introduction of a criterion to evaluate the contribution of the actual frictional resistances depending on the inclination angle of the crack line. An accurate assessment of the frictional resistances is also obtained by distinguishing two different contributions (the wall own weight and additional vertical loads) and their application points. Hence, a sensitivity analysis is performed with respect to the overloading condition, the friction coefficient, and geometrical parameters such as the shape ratios of the wall and the unit block and the number of rows.? The analytical results of the proposed model are also validated against results from other existing macro and micro-block modelling approaches in terms of load factor. The comparison confirms the reliability of the proposed model that allows, with similar results, great simplification of the computational effort with respect to micro-block models.
机译:在本文中,提出了一个考虑摩擦阻力的宏块模型,以评估多层砌体砌块墙体的侧向强度。极限分析的运动学方法用于定义在平面内水平载荷作用下引起摇摆滑动机构起因的载荷因子。根据库仑定律和非关联流规则,在刚性块界面处假定为干摩擦接触条件。提出的方法的关键方面是引入标准,以根据裂纹线的倾斜角度评估实际摩擦阻力的贡献。通过区分两个不同的贡献(墙体自重和附加垂直载荷)及其应用点,也可以获得对摩擦阻力的准确评估。因此,对过载条件,摩擦系数和诸如壁和单元块的形状比和行数之类的几何参数进行敏感性分析。相对于其他现有的宏块和微块建模方法的结果,还针对负载因子验证了所提出模型的分析结果。该比较证实了所提出的模型的可靠性,从而以相似的结果极大地简化了关于微块模型的计算工作。

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