地震荷载对纳米复合材料液态烃储罐的影响处理

Q3 Engineering
O. Sierikova, E. Strelnikova, K. Degtyarev
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引用次数: 4

摘要

液态烃储罐是环境危险的对象。有必要进行额外的计算并制定适当的设计解决方案,以最大限度地降低地震或爆炸时发生事故的风险。地震对环境危险物的破坏程度不仅取决于地震作用水平,还取决于抗震设计和施工质量。在设计用于环境危险液体储存的储罐时,没有充分考虑到技术和自然因素导致的暴露于较小但更频繁和延长的地震荷载的可能性。在储存液态烃的储罐中使用纳米夹杂物的复合材料,可以提高储罐在地震载荷下的可靠性,并在各种来源的自然和技术影响的影响下延长其使用寿命。计算结果表明,使用具有钢球形式的纳米夹杂物的复合材料是储罐在地震载荷下环保运行的最佳选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seismic Loads Influence Treatment on the Liquid Hydrocarbon Storage Tanks Made of Nanocomposite Materials
The liquid hydrocarbon storage tanks are the objects of environmental danger. It is necessary to perform additional calculations and develop appropriate design solutions to minimize the risks of their accidents in the event of the earthquake or explosions. The degree of damage to the environmentally hazardous object during the earthquake depends not only on the seismic effects level, but also on the quality of seismic design and construction. The possibility of exposure to smaller but more frequent and prolonged seismic loads caused by technogenic and natural factors has not been sufficiently taken into account in tanks designing for the environmentally hazardous liquids storage. The composite materials using with nanoinclusions in tanks for storage liquid hydrocarbons, allows to increase the reliability of tanks under seismic loads and extend their service life under the influence of natural and technogenic influences of various origin. The results of the calculations have been shown that the use of composite materials with nanoinclusions in the steel spheres form is the best option for environmentally friendly operation of tanks under seismic loads.
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来源期刊
WSEAS Transactions on Applied and Theoretical Mechanics
WSEAS Transactions on Applied and Theoretical Mechanics Engineering-Computational Mechanics
CiteScore
1.30
自引率
0.00%
发文量
21
期刊介绍: WSEAS Transactions on Applied and Theoretical Mechanics publishes original research papers relating to computational and experimental mechanics. We aim to bring important work to a wide international audience and therefore only publish papers of exceptional scientific value that advance our understanding of these particular areas. The research presented must transcend the limits of case studies, while both experimental and theoretical studies are accepted. It is a multi-disciplinary journal and therefore its content mirrors the diverse interests and approaches of scholars involved with fluid-structure interaction, impact and multibody dynamics, nonlinear dynamics, structural dynamics and related areas. We also welcome scholarly contributions from officials with government agencies, international agencies, and non-governmental organizations.
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