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Effect of cohesion and fill amplification on seismic stability of municipal solid waste landfills using limit equilibrium method

机译:极限平衡法研究内聚和填充放大对生活垃圾填埋场抗震稳定性的影响

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Municipal solid waste (MSW) landfills in seismic zones are subjected to the seismic forces both in the horizontal and vertical directions. The stability of landfills against these seismic forces was evaluated by computing the factor of safety of landfills with different modes of failure among which failures of landfills due to translation are very common. Conventionally, the seismic stability of landfill is evaluated by using pseudo-static limit equilibrium method. In the present study, seismic stability of landfills is evaluated by both the conventional pseudo-static and modern pseudo-dynamic method. The pseudo-dynamic method is superior as it takes into account the effect of duration and frequency of earthquake motion and corresponding body waves in addition to the variation of earthquake accelerations along depth and time. In the present study, the effects of cohesion and fill amplification on seismic stability of landfill are also taken into account. It was noticed that, neglecting cohesion of fill material as well as liner material, results in a lower factor of safety and, hence, a very conservative/uneconomic design. Also, fill amplification is found to reduce the factor of safety values computed only by using the pseudo-dynamic method, showing its advantage. Generalized expressions are developed for factor of safety and yield acceleration against translational failure, which can be used for evaluating the seismic stability of MSW landfills. Comparisons of results under static condition with existing, similar methodology show a very good agreement. However, the present study seems to provide unique results for the seismic case.
机译:地震带中的城市生活垃圾填埋场在水平和垂直方向上都受到地震作用。通过计算具有不同破坏模式的填埋场的安全系数,评估了填埋场对这些地震力的稳定性,其中平移导致的填埋场破坏非常普遍。常规地,使用伪静态极限平衡法来评估垃圾填埋场的地震稳定性。在本研究中,通过传统的拟静力法和现代拟动力法对垃圾填埋场的地震稳定性进行了评估。拟动力方法具有优越性,因为它不仅考虑了地震加速度沿深度和时间的变化,还考虑了地震运动的持续时间和频率以及相应的体波的影响。在本研究中,还考虑了内聚力和填充物放大对填埋场地震稳定性的影响。注意到,忽略填充材料和衬里材料的内聚力,导致较低的安全系数,因此导致非常保守/不经济的设计。此外,发现填充放大可以减少仅通过使用伪动态方法计算得出的安全系数值,从而显示出其优势。针对安全性和针对平移破坏的屈服加速度,开发了通用表达式,可用于评估MSW垃圾填埋场的地震稳定性。将静态条件下的结果与现有的类似方法进行比较,结果显示出很好的一致性。但是,本研究似乎为地震案例提供了独特的结果。

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