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Seismic stability analyses of reinforced tapered landfill cover systems considering seepage forces

机译:考虑渗流力的加筋锥形垃圾填埋场系统的地震稳定性分析

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摘要

One of the most common and economical methods for waste disposal is landfilling. The landfill cover system is one of the main components of landfills which prevents waste exposure to the environment by creating a barrier between the waste and the surrounding environment. The stability and integrity of the landfill cover system is a fundamental part of the design, construction, and maintenance of landfills. A reinforced tapered landfill cover system can be considered as a practical method for improving its stability; however, the simultaneous effects of seismic and seepage forces in the reinforced tapered landfill cover system have not been studied. The current paper provides a solution based on the limit equilibrium method in order to evaluate the stability of a reinforced tapered landfill cover system under seismic and seepage (both horizontal and parallel seepage force patterns) loading conditions. The proposed analytical approach is applied to different design cases through parametric study and the obtained results are compared to those derived from literature. Parametric study is performed to illustrate the sensitivity of the safety factor (FS) to the different design parameters. The obtained results reveal that parameters which describe the geometry have limited effects on the stability of the landfill cover system in comparison to the rest of the studied design parameters. Moreover, the comparisons between the derived results and available methods demonstrate good agreement between obtained findings with those reported in the literature.
机译:垃圾填埋是最常见,最经济的废物处理方法之一。垃圾掩埋场覆盖系统是垃圾掩埋场的主要组成部分之一,它通过在废物和周围环境之间建立屏障来防止废物暴露于环境。垃圾掩埋场覆盖系统的稳定性和完整性是垃圾掩埋场设计,建造和维护的基本部分。可以考虑使用增强型锥形填埋覆盖系统来提高其稳定性。但是,还没有研究地震和渗流力在加筋锥形垃圾掩埋覆盖系统中的同时影响。本文基于极限平衡法提供了一种解决方案,以评估在地震和渗流(水平和平行渗流力模式)条件下加筋的锥形垃圾填埋场覆盖系统的稳定性。所提出的分析方法通过参数研究应用于不同的设计案例,并将获得的结果与从文献中得出的结果进行比较。进行参数研究以说明安全系数(FS)对不同设计参数的敏感性。获得的结果表明,与其余研究设计参数相比,描述几何形状的参数对垃圾掩埋覆盖系统的稳定性影响有限。此外,得出的结果与可用方法之间的比较表明,所获得的发现与文献报道的发现之间具有很好的一致性。

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