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Reliability-based calibration of resistance factors for static bearing capacity of driven steel pipe piles

机译:基于可靠性的打入钢管桩静承载力阻力因子标定

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摘要

As part of a study to develop load and resistance factor design (LRFD) codes for foundation structures in South Korea, resistance factors for the static bearing capacity of driven steel pipe piles were calibrated in the framework of the reliability theory. A database of 52 static load test results was compiled, and the data from these load test piles were sorted into two cases: a standard penetration test (SPT) N-value at pile tip (i) less than 50 and (ii) equal to or more than 50. Reliability analyses and resistance factor calibration for the two static bearing capacity analysis methods adopted in the Korean Design standards for foundation structures were performed using the first-order reliability method (FORM) and the Monte Carlo simulation (MCS). Reliability indices and resistance factors computed by the MCS are statistically identical to those computed by FORM. Target reliability indices were selected as 2.0 and 2.33 for the group pile case and 2.5 for the single pile case. The resistance factors recommended from this study are specific for the pile foundation design and construction practice and the subsurface conditions in South Korea.
机译:作为开发韩国基础结构的荷载和阻力因子设计(LRFD)规范的研究的一部分,在可靠性理论的框架内校准了驱动钢管桩的静态承载力的阻力因子。汇编了一个包含52个静态载荷测试结果的数据库,并将这些载荷测试桩的数据分为两种情况:桩尖的标准渗透试验(SPT)N值(i)小于50,并且(ii)等于大于或等于50。使用一级可靠性方法(FORM)和蒙特卡洛模拟(MCS)对韩国基础结构设计标准中采用的两种静态承载力分析方法进行可靠性分析和阻力系数校准。在统计上,由MCS计算出的可靠性指标和阻力系数与由FORM计算出的可靠性指标和阻力系数在统计学上是相同的。对于群桩情况,目标可靠性指标选择为2.0和2.33,对于单桩情况,目标可靠性指标选择为2.5。这项研究推荐的抗力因子是韩国桩基础设计和施工实践以及地下条件所特有的。

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