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Resistance functions for blast fragility quantification of reinforced concrete block masonry shear walls

机译:钢筋混凝土砌块砌坯砌坯爆破脆性量化的电阻函数

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Reinforced masonry shear wall (RMSW) systems constructed using concrete blocks are widely used within the current North American construction practices. The limited research carried out on the performance of RMSWs under blast loading has reviled their high vulnerability. This study evaluates the blast performance of such loadbearing and non-loadbearing RMSWs considering the variability associated with different blast wavefront parameters, specifically the positive specific impulse and the peak reflected pressure. In this respect, a concentrated plasticity model is created using OpenSees that simulates the out-of-plane behavior of RMSWs. The model is first validated both statically and dynamically using different experimental datasets. Afterward, the model is utilized within an iterative framework to track the strain rates of different RMSW constituent materials, thus extracting the corresponding dynamic increase factors. Finally, the developed model is used to generate fragility curves and surfaces considering the expected variability/uncertainty in blast wavefront parameters on the response of RMSWs with different axial stress levels and reinforcement ratios. The proposed fragility quantification approach paves the way to develop new blast risk assessment tools for the next generation of blast resistant construction standards.
机译:使用混凝土块构建的增强砌体剪力墙(RMSW)系统被广泛应用于当前北美建筑实践。对爆炸负荷下RMSWS性能进行的有限研究已经令他们升级其高脆弱性。本研究评估了考虑到与不同爆发波前参数相关的可变性,特别是正面特定脉冲和峰值反射压力的可变性来评估这种负荷和非负载串行RMSW的爆破性能。在这方面,使用模拟RMSW的平面外行为的Opense来创建集中的可塑性模型。首先使用不同的实验数据集进行静态和动态验证该模型。之后,在迭代框架内使用该模型以跟踪不同RMSW构成材料的应变速率,从而提取相应的动态增加因子。最后,开发的模型用于产生脆弱曲线和表面,考虑到爆炸波前参数的预期变化/不确定性,在具有不同轴向应力水平和增强比的RMSWS响应中。拟议的脆弱量化方法为下一代爆炸施工标准开发了开发新的爆炸风险评估工具。

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