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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Effect of Spatial Correlation of Cone Tip Resistance on the Bearing Capacity of Piles
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Effect of Spatial Correlation of Cone Tip Resistance on the Bearing Capacity of Piles

机译:锥头阻力空间相关性对桩承载力的影响

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The cone tip resistance (q_c) from cone penetration tests (CPTs) is widely used to determine the bearing capacity of piles. Although it is widely known that soil properties are spatially correlated, the spatial correlation of q_c is not considered in the current methods for predicting the bearing capacity of piles. In this paper, a probabilistic approach is presented for predicting the bearing capacity of driven piles in clay by considering the spatial correlation between q_(csVn) (the spatial average of q_c of the bottom soil layer within the pile length) and q_(cbV) (the spatial average of q_c over an interval near the pile base). Parametric studies are conducted to evaluate the effect of the spatial correlation between q_(csVn) and q_(cbV) on the bearing capacity of piles. The results indicate that it is important to consider the spatial correlation between q_(csVn) and q_(cbV) in the probabilistic prediction of the bearing capacities of piles. Ignoring the spatial correlation between q_(csVn) and q_(cbV) will underestimate the probability of failure and lead to unsafe design. Finally, 14 field test piles are analyzed with the presented approach to demonstrate the probabilistic prediction of the bearing capacity of piles by considering the spatial correlation of the CPT data.
机译:圆锥体渗透测试(CPT)产生的圆锥体尖端阻力(q_c)被广泛用于确定桩的承载能力。尽管众所周知,土壤特性在空间上是相关的,但在目前的预测桩承载力的方法中并未考虑q_c的空间相关性。本文提出一种概率方法,通过考虑q_(csVn)(桩长内底部土层q_c的空间平均值)与q_(cbV)之间的空间相关性来预测黏土中打入桩的承载力(在桩基附近的区间内,q_c的空间平均值)。进行了参数研究,以评估q_(csVn)和q_(cbV)之间的空间相关性对桩的承载力的影响。结果表明,在桩承载力的概率预测中,考虑q_(csVn)和q_(cbV)之间的空间相关性很重要。忽略q_(csVn)和q_(cbV)之间的空间相关性将低估失败的可能性并导致设计不安全。最后,利用提出的方法对14个现场测试桩进行了分析,以通过考虑CPT数据的空间相关性来证明桩的承载力的概率预测。

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