Resistance Factors at Serviceability Limit State Using the Texas Cone Penetrometer as the Predictive Model

R. Moghaddam
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Abstract

This study presents the development and calibration of resistance factors for the serviceability limit state (SLS) condition (φSLS) used in the load and resistance factor design (LRFD) of deep foundations. The performance function was established based on load corresponding to tolerable displacement (Qδtol) and design load (Qd). A dataset of published full-scale load tests including projects from Texas, Missouri, Arkansas, Louisiana, and New Mexico was compiled and consisted of 60 load test cases comprising 33 driven piles and 27 drilled shafts. Resistance factors for SLS conditions were calibrated for tolerable displacements using both the Monte Carlo simulation (MCS) and the First Order Second Moment (FOSM) approaches. From the calibration study, resistance factors at SLS conditions were obtained ranging from 0.33 to 0.62 using FOSM method and 0.37 to 0.67 using the MCS for driven piles. In the case of drilled shafts, SLS resistance factors ranged from 0.37 to 0.77 following the FOSM method and 0.41 to 0.86 based on MCS.
使用德克萨斯锥贯仪作为预测模型的耐磨性极限状态下的阻力因素
本文研究了深地基荷载与阻力系数设计中适用于使用能力极限状态(SLS)条件(φSLS)的阻力系数的开发与标定。基于容许位移(Qδtol)和设计荷载(Qd)对应的荷载建立了性能函数。数据集包括来自德克萨斯州、密苏里州、阿肯色州、路易斯安那州和新墨西哥州的项目,包括60个负载测试案例,包括33个打入桩和27个钻孔井。使用蒙特卡罗模拟(MCS)和一阶二阶矩(FOSM)方法对SLS条件下的阻力因子进行了可容忍位移校准。从校准研究中,获得了SLS条件下的阻力系数,使用FOSM方法为0.33 ~ 0.62,使用MCS方法为0.37 ~ 0.67。对于已钻井筒,采用FOSM方法的SLS阻力系数为0.37 ~ 0.77,采用MCS方法的SLS阻力系数为0.41 ~ 0.86。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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