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Experimental-theoretical investigation for damage assessment of a reinforced concrete slab under consecutive explosions based on single-degree-of-freedom model

机译:基于单度自由度模型的连续爆炸抗钢筋混凝土板损伤评价的实验理论研究

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摘要

This study performed damage assessment of a reinforced concrete slab subjected to consecutive explosions. To this end, the resistance functions were updated to account for the permanent displacement calculated in the previous step to capture the response of the reinforced concrete slab of the current explosion. In other words, the permanent deformation should be basically evaluated according to the prior explosion. Next, the revised resistance function should be calculated according to damage level. Third, the maximum dynamic responses should be estimated based on the modified single-degree-of-freedom model. Finally, cumulative damages can be evaluated based on the sum of the permanent deformation and the maximum dynamic responses. In order to confirm a feasibility of the proposed single-degree-of-freedom model, a comparative study with the finite element analysis results is carried out under the identical consecutive explosions. Prior to performing the comparative study, the computational model of the target structure is calibrated based on small-scale experimental data to carry out more reliable finite element analysis.
机译:本研究对连续爆炸进行了钢筋混凝土板进行了损伤评估。为此,更新电阻函数以考虑在前一步中计算的永久性位移,以捕获当前爆炸的钢筋混凝土板的响应。换句话说,应根据现有爆炸基本上评估永久性变形。接下来,应根据损坏级别计算修改的电阻函数。第三,应基于修改的单级自由度模型来估计最大动态响应。最后,可以基于永久变形和最大动态响应的总和来评估累积损坏。为了确认所提出的单度自由度模型的可行性,在相同的连续爆炸下进行有限元分析结果的比较研究。在进行比较研究之前,基于小规模实验数据校准目标结构的计算模型,以执行更可靠的有限元分析。

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