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Explosive Performance Assessment of Buried Steel Pipeline

机译:埋藏钢管管道的爆炸性能评估

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It is so important to consider the passive defense problem in any places there have been attacks by varies kinds of military threats and terrorists. It is certain that social security is related to overcoming on these perils and protection from country. Vital facilities are one of examples that should be protected. Vital facilities include roads, bridges, transmission lines, and telecom and media network. With attention to the intense dependent to export and transmit of oil and gas and with consideration of this point that many places are full of gas and oil resource, the protection of these lines is very important. In recent years, occurrence of varies kinds of terrorist accidents in relation to important structures in all the world causes that the explosion loads have special attention. Explosion can generate much damage with vibration in vast soil media. Thus, it is important to predict the dynamic impact load and its treatment response. With attention to regardable development of numerical methods in recent decades, it is possible to investigate the explosion effects on surface and underground structures. In this research, the newest applied method modeling of the explosion phenomenon has been investigated and comprehensive information has been earned. In this investigation, problem of explosion wave’s propagation effects on buried pipes simulated by ABAQUS/CAE 6.10-1 was studied based on the finite element method. Surface explosion effects on gas buried pipe lines and their dynamic response have been investigated depending on properties and their characteristics. The variation of buried pipe depth effects and variation effects in soil properties around pipe in different cases has been considered, and the results are here. The results showed that in buried pipes under surface explosions, displacements, major stresses, and strains decrease in clay, dense, and loose sands with increase of buried depth. These results obtain that because of increase of closuring of pipes in soil when internal friction angle increases for a kind of soil, the stress on pipe rim will decrease also. It was also observed that the pipe performance in clay and loose sands is better than that in compacted sand, respectively.
机译:在任何地方考虑被动防御问题是如此重要的是因各种各样的军事威胁和恐怖分子袭击。确保社会保障与克服这些危险和保护国家有关。重要设施是应受保护的例子之一。重要设施包括道路,桥梁,输电线路和电信和媒体网络。关注依赖于出口和发射石油和天然气的激烈,并考虑到这一点,许多地方都充满了天然气和石油资源,保护这些线条非常重要。近年来,各种世界各种恐怖主义事故发生的各种恐怖事故的发生导致爆炸载荷特别关注。爆炸可以在庞大的土壤介质中产生很大的振动。因此,重要的是预测动态冲击载荷及其治疗响应是重要的。近几十年来重视数值方法的发展,可以调查表面和地下结构的爆炸效果。在这项研究中,已经调查了爆炸现象的最新应用方法建模,并获得了全面的信息。在该研究中,基于有限元方法研究了ABAQUS / CAE 6.10-1模拟的埋地管的爆炸波的传播效应的问题。根据性质及其特征,研究了对气体埋管管线的表面爆炸效应及其动力响应。已经考虑了不同病例中的管道周围土壤性质的埋地管深度效应和变化效应的变化,结果在这里。结果表明,在表面爆炸下的埋地管中,粘土,致密和松散的砂浆的埋入管,粘土,粘土和松散的砂浆的菌株降低。这些结果获得了,由于在内部摩擦角度增加土壤中的土壤中的管道闭合时,管边缘的压力也将减少。还观察到粘土中的管道性能分别优于压实砂中的管道性能。

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