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Evaluation of static liquefaction potential of silty sand slopes

机译:粉质砂质边坡静态液化潜力评价

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The mechanism of instability in granular soils is explained and its requirement as a forerunner to the liquefaction of level or sloping ground is described. Case histories support the observation that it is silty sands that liquefy under static and a majority of earthquake-induced conditions. Recent experiments show that clean sands do not behave similarly to silty sands. Tests on loose, silty sand indicate a "reverse" behavior with respect to confining pressure and this violates the basic assumption that loose, silty sands behave similarly to loose, clean sands. Strong correlations between fines content, compressibility, and liquefaction potential are often found for these soils. A procedure for the analysis and evaluation of static liquefaction of slopes of fine sand and silt, such as submarine slopes, mine tailings, and spoil heaps, is presented. It involves determination of the region of instability in stress space in which potential liquefaction may be initiated and determination of the state of stress in the slope. A method of finding the state of stress is developed to predict the zone of potential liquefaction in simple slopes. Trigger mechanisms for initiation of instability followed by soil liquefaction are reviewed and mechanisms of soil strengthening are discussed.
机译:解释了粒状土壤中的不稳定性机理,并描述了其作为水平或倾斜地面液化的先决条件的要求。案例历史支持这样的观察:在静态和大多数地震诱发的条件下,是粉质砂液化。最近的实验表明,干净的沙子与粉质沙子的行为不同。在松散的粉质砂土上进行的测试表明,围压具有“反向”行为,这违背了松散的粉质砂土与松散的清洁砂土具有相似行为的基本假设。通常在这些土壤中发现细粉含量,可压缩性和液化潜力之间的密切关系。提出了一种分析和评估细砂和粉砂边坡(例如海底边坡,矿山尾矿和弃渣堆)的静态液化的程序。它涉及确定应力空间中可能引发液化的不稳定区域,以及确定斜率中的应力状态。开发了一种寻找应力状态的方法,以预测简单斜坡中潜在的液化区域。综述了引发不稳定并引发液化的触发机制,并讨论了加固土壤的机制。

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