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Axial Response and Bearing Capacity of Tapered Piles in Sandy Soil

机译:砂土中锥形桩的轴向响应及承载力

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14 calibration chamber tests were performed to investigate the axial responses of tapered piles in sandy soil. Three instrumented model piles with different taper angles, designed to have the same volume, were used in the tests. Results of the model pile load tests showed that the shaft load of tapered piles continuously increased with pile settlement, whereas that of cylindrical piles reached the ultimate values at a settlement equal to about 2 % of the pile diameter. The ratio of the load capacity of tapered piles to that of cylindrical piles was found to vary with both the taper angle of the piles and the soil condition of the sands. The ultimate unit shaft resistance of tapered piles was always greater than that of cylindrical piles irrespective of soil condition, whereas the ultimate unit base resistance of tapered piles was greater than that of cylindrical piles for dense sand with lateral earth pressure coefficients higher than 0.42. It was also observed that the ultimate unit shaft resistance of piles increases with increasing taper angle regardless of the relative density and stress state of the sand. However, the ultimate unit base resistance of piles increases with increasing taper angle for medium sand, but decreases for dense sand. In addition, based on the results of the model pile tests, taper factors for the ultimate unit base and shaft resistances, which can be used to estimate the base and shaft load capacities of tapered piles, were proposed.
机译:进行了14个校准室测试,以研究砂土中锥形桩的轴向响应。在测试中使用了三个具有不同锥角的仪器化模型桩,这些桩被设计为具有相同的体积。模型桩载荷试验的结果表明,锥形桩的轴载荷随着桩沉降的增加而连续增加,而圆柱桩的轴载荷在沉降量等于桩直径的2%时达到了极限值。发现锥形桩与圆柱桩的承载能力之比随桩的锥角和砂土条件的变化而变化。无论土壤条件如何,锥形桩的极限单位竖向阻力总是大于圆柱形桩的,而对于侧向土压力系数高于0.42的致密砂土来说,锥形桩的极限单位竖向阻力大于圆柱形桩的。还可以观察到,桩的最终单位轴阻力随锥角的增加而增加,而与沙子的相对密度和应力状态无关。但是,对于中型砂,桩的最终单位基础阻力随着锥角的增加而增加,而对于密实型砂,则减小。此外,基于模型桩试验的结果,提出了极限单位基础和竖井阻力的锥度因子,可用于估计锥形桩的基础和竖井承载能力。

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