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Resistance of membrane retrofit concrete masonry walls to lateral pressure.

机译:膜翻新混凝土砌体墙的抗侧向压力。

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摘要

Mitigation techniques are currently being sought to ensure public safety in the event of intentional or accidental explosions. Building material fragmentation is a major cause of human injury during such events. One of the most common methods of construction in buildings is the use of concrete masonry walls. Concrete masonry provides a fast inexpensive way to construct buildings of various heights; however, these walls are extremely vulnerable to blast pressure resulting in collapse, fragmentation, and severe injury to occupants.;Much research has been conducted using actual blast tests as well as computational methods to study the behavior of masonry walls. Blast tests examined masonry walls of various shapes and make up, as well as the use of retrofit materials to mitigate the blast damage to masonry.;In the computational arena, research made use of Livermore Software - DYNAmics (LS-DYNA) finite element software to simulate full-scale models of concrete masonry walls. The results were compared to the actual blast tests, but the cost of high fidelity computational models made them impractical for day-to-day design. Design tools developed by other investigators in the field have been available for the past few years; however, their accuracy remains questionable when compared to actual blast test data.;The research presented in this dissertation developed resistance functions for three different scenarios of membrane retrofit unreinforced concrete masonry walls to lateral pressure. These functions were further coupled with single degree of freedom systems to predict the wall response to blast loads. The analysis results were compared to field blast tests for verification.;This research gives the structural engineer a practical software tool for the design of membrane retrofit masonry walls to resist lateral pressures such as wind, and various blast charges and distances.
机译:当前正在寻求缓解技术,以确保在有意或无意爆炸时的公共安全。在此类事件中,建筑材料碎裂是造成人身伤害的主要原因。建筑物中最常见的建筑方法之一是使用混凝土砌体墙。混凝土砌筑提供了一种快速廉价的方式来建造各种高度的建筑物。但是,这些墙极易受到爆炸压力的影响,从而导致坍塌,破碎和对居住者造成严重伤害。爆炸测试检查了各种形状和组成的砌体墙,以及使用改造材料减轻了爆炸对砌体的破坏。在计算领域,研究使用了Livermore Software-DYNAmics(LS-DYNA)有限元软件模拟混凝土砌体墙的完整模型。将结果与实际爆炸测试进行了比较,但是高保真度计算模型的成本使它们无法用于日常设计。由该领域的其他研究人员开发的设计工具在过去的几年中已经可用。然而,与实际的爆破试验数据相比,它们的准确性仍然值得怀疑。本论文提出的研究针对膜片加固无筋混凝土砌体墙的三种不同情况开发了抵抗力,以抵抗侧向压力。这些功能还与单自由度系统结合在一起,以预测墙体对爆炸载荷的响应。分析结果与现场爆破测试进行了比较,以进行验证。该研究为结构工程师提供了一种实用的软件工具,用于设计膜翻新砌体墙,以抵抗诸如风,各种爆破装药和距离等横向压力。

著录项

  • 作者

    Moradi, Lee.;

  • 作者单位

    The University of Alabama at Birmingham.;

  • 授予单位 The University of Alabama at Birmingham.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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