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Estimation of liquefaction potential from dry and saturated sandy soils under drained constant volume cyclic simple shear loading

机译:排水恒体积循环简单剪力作用下干,饱和砂土液化潜力的估算

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Understanding the liquefaction mechanism of sandy soils still remains as one of the challenges in geotechnical earthquake engineering, since clean sands, silty sands and clayey sands do not necessarily show identical reactions under seismic loading. This study investigates the cyclic simple shear responses of three sandy soils: clean sand (Sue Sand 20/55), silty sand (Sue Sand 20155 with 10% IZ silt) and clayey sand (Sue Sand 20/55 with 10% kaolin) based on many dry and saturated specimens. Drained constant volume cyclic simple shear tests on clean and silty sand specimens have shown that liquefaction potential of those soils could also be determined via dry samples. This is an important observation, since dry specimens are much easier to prepare and less time consuming compared to their saturated counterparts, as the demanding saturation process is eliminated. However, cyclic responses of dry and saturated clayey sand specimens were shown to be quite different, and therefore saturation of these specimens is still a must for liquefaction assessment. For both silt and kaolin, adding 10% fines to the base sand increased the liquefaction potential of resulting sandy soils considerably compared to the clean sand at the same void ratio. But this difference relatively decreased as the specimens became looser. (C) 2015 Elsevier Ltd. All rights reserved.
机译:了解砂土的液化机理仍然是岩土地震工程中的挑战之一,因为在地震荷载作用下,清洁砂,粉质砂和黏土砂不一定显示出相同的反应。这项研究调查了三种沙质土壤的循环简单剪切响应:基于洁净砂(Sue Sand 20/55,Sue Sand 20155,含10%IZ淤泥)和黏性砂(Sue Sand 20/55,含10%高岭土)。在许多干燥和饱和的标本上。在干净和粉质砂土样品上进行的排水恒体积循环简单剪切试验表明,这些土壤的液化潜力也可以通过干燥样品确定。这是一个重要的观察结果,因为与饱和样品相比,干燥样品易于制备且耗时少,因为消除了苛刻的饱和过程。然而,干燥和饱和黏土砂岩样品的循环响应显示出很大的不同,因此这些样品的饱和度仍然是液化评估的必要条件。对于粉砂和高岭土,在相同的空隙率下,与干净的砂相比,向基砂中添加10%的细粉会大大提高所得砂土的液化潜力。但是,随着样品变松,这种差异相对减小。 (C)2015 Elsevier Ltd.保留所有权利。

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