冲击荷载作用下砌体结构试验研究及有限元模型修正与数值模拟结果比较

Q3 Engineering
Amir Hoshang Ahakhaveissy, M. Malekshahi
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引用次数: 1

摘要

考虑到爆炸现象与结构的复杂关系,准确研究爆炸荷载作用下的结构行为具有重要意义。爆炸荷载由于其快速和瞬态的特性,是结构上最重要的动力荷载之一。由于砌体材料在既有和新建结构中广泛用作隔墙和承重墙,因此本研究旨在研究埋地爆炸对无加筋砌体结构的影响。为了将爆炸载荷作为时程施加在弹坑上,需要确定爆炸产生的最大自由场压力。据此,采用有限元模型更新(FEMU)计算最大自由场压力。因此,对于爆炸荷载结构的非线性动力分析,使用了用FORTRAN编写的程序。结构模型和土体模型分别采用带拉压帽的Mohr-Coulomb屈服面和经典Mohr-Coulomb屈服面。FEMU数值分析结果与现场数据的对比表明,数值分析结果与现场数据具有较好的一致性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Study of Masonry Structure Under Impact Loading and Comparing it with Numerical Modeling Results via Finite Element Model Updating
Given the sophisticated nature of the blast phenomenon in relation to structures, it is of significance to accurately investigate the structure behavior under blast loads. Due to its rapid and transient nature, blast loading is one of the most important dynamic loadings on the structures. Since masonry materials are widely used as the partition and bearing walls in the existing and newly-built structures, the current research aims to investigate the buried blast effects on unreinforced masonry structures. In order to apply the blast load on a crater as time history, it is required to determine the maximum free field pressure caused by the blast. Accordingly, Finite Element Model Updating (FEMU) was used to calculate the maximum free-field pressure. Thus, for a non-linear dynamic analysis of a blast-loaded structure, a code written in FORTRAN was used. Mohr-Coulomb yield surface with tensile and compression cap and classic Mohr-Coulomb yield surface were used for the structure and the soil modeling, respectively. The comparison of the numerical analysis results in FEMU to field data shows a good consistency between the numerical results and the field data.
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来源期刊
Journal of Rehabilitation in Civil Engineering
Journal of Rehabilitation in Civil Engineering Engineering-Building and Construction
CiteScore
1.60
自引率
0.00%
发文量
0
审稿时长
12 weeks
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