半埋结构的防爆分析

IF 1 Q4 ENGINEERING, CIVIL
M. D. Goel, Mukesh Kumar, V. Matsagar
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引用次数: 0

摘要

半埋式结构最常用于两国边境的第一道防线。这就需要研究它们在爆炸载荷下的动态行为。本文分析了一种采用泡沫夹芯墙和扶壁的半埋结构,以减少爆炸的影响。使用ABAQUS/Explicit®研究了在承受爆炸载荷的两层结构墙之间提供不同结构的扶壁和泡沫芯的影响。半埋结构的建模采用壳体单元,土壤的建模采用独立于频率的弹簧-阻尼器-质量模型。泡沫芯采用砖单元建模,减少了集成度和体积硬化。采用Johnson—Cook(J-C)模型模拟了应变速率对结构钢的影响。结果表明,扶壁的几何形状和泡沫芯的类型决定了结构对动力载荷的响应。据观察,该结构的内壁由墙之间提供的泡沫保护,有助于缓解爆炸。此外,可以观察到,这种结构的设计取决于扶壁类型的正确识别以及通过提供泡沫等能量吸收材料来隔离结构的内壁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Blast Mitigation Analysis of Semi-Buried Structure
Semi-buried structures are most commonly used at first line of defense along the border between two countries. This demands investigation of their dynamic behaviour under blast loading. Herein, a semi-buried structure with foam sandwiched walls and buttresses to reduce the effect of blast is analysed. The effect of provision of different configurations of buttresses and foam core between two layers of structural wall subjected to explosive loadings is investigated using ABAQUS/Explicit®. Modelling of semi-buried structure is carried out by employing shell elements and soil is modelled using frequency independent spring-dashpot-mass model. The foam core is modelled using brick elements with reduced integration and volumetric hardening. Effect of strain rate on structural steel is modelled by employing Johnson-Cook (J-C) model. Results indicate that geometry of buttresses and foam core type governs structural response to dynamic loading. It is observed that inner wall of the structure is protected by foam provided in between walls and helps in blast mitigation. Further, it is observed that design of such structures is dependent on the correct identification of buttresses type and isolation of inner wall of structure by provision of energy absorbing materials like foam.
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来源期刊
CiteScore
1.30
自引率
60.00%
发文量
0
审稿时长
47 weeks
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