Assessment of Blast-Induced Damage in Reinforced Concrete Slabs: A Comparative Study between Numerical Simulation and Advanced Structural Analysis Software

Mr.Rushikesh V Jadhav
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Abstract

This research paper presents a comparative study on the assessment of blast-induced damage in reinforced concrete slabs, focusing on the comparison between numerical simulation and advanced structural analysis software. The objective is to evaluate the accuracy and reliability of both approaches in predicting structural damage caused by blast loading. The study utilizes numerical simulation techniques to model the dynamic behaviour of reinforced concrete slabs subjected to blast loading. Material properties, reinforcement details, and blast loading characteristics are incorporated into the simulations. The resulting structural response and damage are evaluated. In parallel, advanced structural analysis software, specifically MIDAS Civil software selected for its capabilities in blast analysis, is employed to analyse the same set of reinforced concrete slabs under blast loading. The software provides advanced modelling and analysis tools for assessing structural response and calculating blast-induced damage. By comparing the results obtained from the numerical simulations and the advanced structural analysis software, the study evaluates the agreement and capabilities of both approaches. Parameters such as displacements, strains, stress distributions, and damage patterns are examined. The findings contribute to the understanding of the accuracy and limitations of numerical simulation and advanced structural analysis software for blast-induced damage assessment. The results of this comparative study provide valuable insights for practitioners and researchers in blast engineering and structural assessment. The implications for blast-resistant design and recommendations for future research are discussed, aiding in the advancement of effective strategies for assessing and mitigating blast-induced damage in reinforced concrete structures. Keywords: Blast Analysis, Dynamic Linear Analysis, Response Spectrum Analysis, Prestressed Concrete.
钢筋混凝土板爆破损伤评估:数值模拟与先进结构分析软件的对比研究
本文对钢筋混凝土板的爆炸损伤评估进行了对比研究,重点是数值模拟与先进结构分析软件的比较。目的是评估这两种方法在预测爆炸荷载引起的结构损伤方面的准确性和可靠性。该研究利用数值模拟技术来模拟钢筋混凝土板在爆炸荷载作用下的动力行为。材料性能,加固细节和爆炸加载特性被纳入模拟。由此产生的结构响应和损伤进行了评估。同时,采用先进的结构分析软件,特别是MIDAS Civil软件,选择其爆炸分析能力,来分析爆炸荷载下的同一组钢筋混凝土板。该软件为评估结构响应和计算爆炸引起的损伤提供了先进的建模和分析工具。通过比较数值模拟结果和先进的结构分析软件,研究评估了两种方法的一致性和能力。参数,如位移,应变,应力分布和损伤模式进行检查。研究结果有助于理解数值模拟和先进结构分析软件用于爆炸损伤评估的准确性和局限性。这一比较研究的结果为爆破工程和结构评估的从业者和研究人员提供了有价值的见解。讨论了抗爆设计的意义和对未来研究的建议,有助于提高评估和减轻钢筋混凝土结构爆炸损伤的有效策略。关键词:爆破分析,动力线性分析,反应谱分析,预应力混凝土。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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