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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >CPT-Based Design Method for Axial Capacities of Drilled Shafts and Auger Cast-in-Place Piles
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CPT-Based Design Method for Axial Capacities of Drilled Shafts and Auger Cast-in-Place Piles

机译:基于CPT的钻孔轴和螺旋钻桩桩轴承设计方法

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摘要

The paper presents observations from a newly compiled database of static load tests comprising 68 instrumented drilled shafts and auger cast-in-place piles in sands, sand mixtures, silt mixtures, and clays at 37 sites around the world. The measured unit shaft friction and base resistance of the database piles are compared with values calculated using well known methods that correlate capacity directly to the cone penetration test (CPT) end resistance. It is shown that the updated Laboratoire Central des Ponts et Chaussees (LCPC) method in 2012 is the best performing of existing CPT-based methods. A new CPT approach is proposed that, similar to other recently published approaches and experimental studies, involves the soil behavior type index (I_c) determined in CPTs in the formulation. This approach can be expected to lead to more reliable estimates of pile capacity as it provides an improved fit to the new database while also being consistent with the trends implicit in the LCPC method, which is based on a larger and independent data set.
机译:本文介绍了新编译的静载试验数据库的观察,包括68个仪器钻井轴和螺旋钻在全球37个位点的砂岩,沙子混合物,淤泥混合物和粘土中。将测量的单位轴摩擦和数据库堆的施加与使用熟知方法计算的值进行比较,这些方法将容量直接与锥形穿透试验(CPT)最终电阻相关联。结果表明,2012年更新的Laboratoire Central des Ponts et Chaussees(LCPC)方法是现有基于CPT的方法的最佳性能。提出了一种新的CPT方法,类似于最近公布的方法和实验研究,涉及在制剂中的CPT中确定的土壤行为类型指数(I_c)。这种方法可以预期导致更可靠的桩容量估计,因为它为新数据库提供了改进的拟合,同时也与LCPC方法中隐含的趋势一致,这是基于更大和独立的数据集。

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