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Modelling seismically repaired and retrofitted reinforced concrete shear walls

机译:对经过地震修复和改造的钢筋混凝土剪力墙进行建模

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摘要

The Finite Element Method (FEM) was employed to demonstrate that accurate simulations of seismically repaired and retrofitted reinforced concrete shear walls can be achieved provided a good analysis program with comprehensive models for material and structural behaviour is used. Furthermore, the analysis tool should have the capability to retain residual damage experienced by the original structure and carry it forward in the repaired and retrofitted structure. The focus herein is to provide quick, simple, but reliable modelling procedures for repair and retrofitting strategies such as concrete replacement, addition of diagonal reinforcing bars, bolting of external steel plates, and bonding of external steel plates and fibre reinforced polymer sheets, thus illustrating versatility in the modelling. Slender, squat, and slender-squat shear walls were investigated. The modelling utilized simple rectangular membrane elements for the concrete, truss bar elements for the steel and FRP retrofitting materials, and bond-link elements for the bonding interface between steel or FRP to concrete. The analyses satisfactorily simulated seismic behaviour, including lateral load capacity, displacement capacity, energy dissipation, hysteretic response, and failure mode.
机译:使用有限元方法(FEM)来证明,只要使用具有材料和结构行为综合模型的良好分析程序,就可以对地震维修和翻新的钢筋混凝土剪力墙进行精确的模拟。此外,分析工具应具有保留原始结构所经历的残余损伤的能力,并将其继续运用于维修和翻新的结构中。本文的重点是为维修和翻新策略提供快速,简单但可靠的建模程序,例如混凝土更换,增加对角钢筋,外部钢板的螺栓连接以及外部钢板和纤维增强聚合物板的粘结,从而说明建模中的多功能性。研究了细长,下蹲和细长下蹲的剪力墙。该建模使用简单的矩形膜单元用于混凝土,桁架杆单元用于钢和FRP翻新材料,以及键链接单元用于钢或FRP与混凝土之间的粘合界面。这些分析令人满意地模拟了地震行为,包括侧向载荷能力,位移能力,能量耗散,滞后响应和破坏模式。

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