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Pitfalls in interpretation of cone penetration test data recovered from unsaturated geomaterials

机译:陷入孔渗透试验数据的陷阱,从不饱和地荒漠化恢复

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Laboratory-controlled and field cone penetration test (CPT) results for unsaturated geomaterials (sands, silty sands, tailings) show that suction has a pronounced influence. The penetration resistances increase significantly due to the presence of suction when compared to those for saturated or dry states, for a given relative density and net confining stress. For unsaturated sands, when suction is included in the effective stress, the same semi-empirical expressions used for saturated conditions are found to link penetration resistance to the relative density and effective confining stress. However, the same is not true for unsaturated silty sands, as saturated and unsaturated silty sands behave very differently around a penetrating cone. Suction also has implications when using classification charts. Cone penetration test results from a range of soils and tailings for both saturated and unsaturated conditions are plotted in one type of chart. Suction-induced increases in penetration resistances, and changes of soil behaviours from partially drained/undrained to drained cause incorrect classifications and assessments that geomaterials are dilative. Failure to account for suction influences, and the altered material response, may also lead to overestimation of cyclic resistance ratio.
机译:实验室控制和野外锥形渗透试验(CPT)对于不饱和地荒地(砂,粉尘,尾矿)的结果表明吸力具有明显的影响。对于给定的相对密度和净限制应力,渗透电阻由于存在于饱和或干燥状态而与饱和或干燥状态相比,由于存在。对于不饱和砂,当抽吸中包括在有效应力中时,发现用于饱和条件的相同的半经验表达式将渗透性抗性与相对密度和有效限制应力联系起来。然而,对于不饱和粉状砂,相同的是不正确,因为饱和和不饱和的粉状砂在渗透锥周围的情况下非常不同。使用分类图表时,吸入也具有影响。锥形渗透试验结果来自一系列饱和和不饱和条件的土壤和尾矿在一种图表中绘制。吸入引起的渗透抗性的增加,以及部分排水/不涉及排出的土壤行为的变化导致土工材料扩张的不正确的分类和评估。未能考虑吸入影响,以及改变的材料响应,也可能导致循环阻力比的估计。

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