Seismic Performance of Reinforced Concrete Structures with Concrete Deficiency Caused by In-situ Quality Management Issues

Areen Aljaafreh, Yazan Alzubi, Eslam Al-Kharabsheh, Bilal Yasin
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Abstract

Concrete is a widely used building material known for its cost-effectiveness and high resistance compared to alternative materials. However, uncertainties in the casting process due to variations in the environment and human error can compromise its strength, increasing the risk of collapse when subjected to seismic excitations. Previous studies have demonstrated the detrimental effects of earthquake vibrations on buildings and infrastructure. This study aims to fill the research gap by investigating the seismic behavior of reinforced concrete (RC) structures constructed with lower-quality concrete under near-fault pulse-like ground motions. The main objective of this research is to assess the impact of diminished concrete strength on structural rigidity and susceptibility to ground disturbances. Specifically, the study aims to quantify the extent of performance changes in defective structures, particularly those constructed with poor-quality concrete, in response to seismic activities. To achieve this, the research involves developing multiple finite element models and conducting nonlinear analysis to scrutinize their behavior. A key focus of the study is to compare the performance of various RC buildings with concrete defects to that of a benchmark model. This comparative analysis highlights the influence of suboptimal quality control on the nonlinear behavior of RC structures. Furthermore, the study examines the correlation between changes in building response and earthquake characteristics to provide comprehensive insights into the potential risks associated with substandard construction practices. Based on the results of this study, it was found that inadequate quality control of concrete significantly impacts the performance of RC frames subjected to pulse-like ground motions. The decrease in compressive strength of the concrete led to noticeable increases in various structural parameters, including story shear, overturning moments, story displacement, drifts, accelerations, and hysteretic energy. These findings highlight the detrimental effects of compromised concrete quality on the overall structural response. Doi: 10.28991/CEJ-2023-09-08-010 Full Text: PDF
因现场质量管理问题导致混凝土不足的钢筋混凝土结构抗震性能研究
混凝土是一种广泛使用的建筑材料,与其他材料相比,它具有成本效益和高阻力。然而,由于环境变化和人为错误导致的铸造过程中的不确定性可能会降低其强度,增加在地震激励下倒塌的风险。以前的研究已经证明了地震振动对建筑物和基础设施的有害影响。本研究旨在通过研究用低质量混凝土建造的钢筋混凝土(RC)结构在近断层脉状地震动作用下的抗震性能来填补这一研究空白。本研究的主要目的是评估混凝土强度降低对结构刚度和对地面扰动的敏感性的影响。具体来说,该研究旨在量化有缺陷结构的性能变化程度,特别是那些用劣质混凝土建造的结构,以响应地震活动。为了实现这一目标,研究涉及开发多个有限元模型并进行非线性分析以仔细检查其行为。本研究的重点是将各种混凝土缺陷的钢筋混凝土建筑的性能与基准模型的性能进行比较。这一对比分析突出了次优质量控制对钢筋混凝土结构非线性行为的影响。此外,该研究还考察了建筑响应变化与地震特征之间的相关性,以全面了解与不合格建筑实践相关的潜在风险。基于本研究的结果,我们发现混凝土质量控制不足会显著影响混凝土框架在脉动地震动作用下的性能。混凝土抗压强度的降低导致各结构参数的显著增加,包括层剪力、倾覆力矩、层位移、漂移、加速度和滞回能。这些发现强调了混凝土质量受损对整体结构反应的有害影响。Doi: 10.28991/CEJ-2023-09-08-010全文:PDF
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