固体垃圾填埋场在地震作用下的性能研究

IF 0.6 Q4 ENGINEERING, CIVIL
Behnaz Seyedi Marghaki, Fazlollah Soltani, E. N. Farsangi, A. Sivandi‐Pour
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引用次数: 0

摘要

摘要垃圾填埋场设计应考虑垃圾内部稳定性、内部稳定性以及保温系统与填埋场床层元件之间的共稳定性。保温系统的矿物和土工合成材料的应力和由此产生的变形必须在设计中加以控制,这样就不会产生不可预测的流动路径。此外,保温系统的长期耐久性也应加以考虑。对系统耐久性的评估需要了解组件和作为沉降对象的废物之间的相互作用。数值模拟方法可用于评估局部失稳。在本研究中,在ABAQUS有限元平台上对英国建造的一个垃圾填埋场进行了建模,并用填埋场精密仪器获得的数据结果进行了验证。然后,应用地震激励,研究了垃圾填埋场在远场和近场地震作用下的抗震性能及其对垃圾填埋场墙体耐久性的影响。输出包括最大位移、最大应力、最临界状态以及土工膜层屈服应力和破裂的研究。结果表明:在垃圾填埋管壁中,垃圾段的位移最大;尤其发生在天然土壤与废弃物的边界之间。在地震荷载作用下,土工膜层发生了一定程度的破裂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of Solid Waste Landfills Under Earthquake-Induced Vibrations
Abstract The stability inside the waste, internal stability, and co-stability between the elements of the insulation system and the landfill bed should be considered in the landfill design. The stresses and the resulting deformations in both mineral and geosynthetic materials of the insulation system must be controlled in the design, so that an unpredictable flow path is not created. Besides, long-term durability in the insulation system should be considered. An evaluation of the durability of the system requires knowledge of the interaction between the components and the waste as a settling object. The numerical modeling methods can be used to evaluate the local instability. In this study, a landfill constructed in the UK has been modeled in ABAQUS finite element platform and was verified with the results of obtained data from precision instruments at the landfill site. Then, by applying the earthquake excitations, the seismic behavior of the solid waste landfill under Far-Field and Near-Field earthquakes and their effect on the durability of the landfill wall system were investigated. The outputs include maximum displacement, maximum stress, the most critical state, and investigation of yield stress and rupture of the geomembrane layer. The results indicated that in the landfill wall, the maximum displacement occurs in the waste section. It occurs especially between the boundary of natural soil and waste. It was also observed that the geomembrane layer under the earthquake loadings had experienced some ruptures.
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14.30%
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