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Reliability Analysis of Bearing Capacity Equations for Drilled Shafts Socketed in Weathered Rock

机译:风化岩石中承插钻杆承载力方程的可靠性分析

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As the use of drilled shafts for the foundation of a large size structure increases, the evaluation of the reliable bearing capacity of a pile has become important. The purpose of this study is to examine the reliability of bearing capacity equations for drilled shafts socketed in weathered rock by comparing the bearing capacity values obtained by the bearing capacity equations with the measured ones. To this aim, 17 static load test data obtained from four field sites were collected, and based on these test data, the ultimate bearing capacity of rock-socketed piles were acquired. Three bearing capacity equations widely used in practice were selected for the reliability analysis. They are the AASHTO method (1996), Carter & Kulhawy method (1988), and FHWA method (1999). The comparison of the bearing capacity values showed that FHWA method predicted the bearing capacities most closely to the measured ones on average, whereas the Carter & Kulhawy method (1988) and AASHTO method (1996) consistently predicted bearing capacities conservatively with acceptable discrepancy.
机译:随着在大型结构的基础上使用钻孔轴的增加,对桩的可靠承载力的评估变得重要。这项研究的目的是通过比较由承载力方程获得的承载力值与测得的承载力值,来检验风化岩石中钻轴的承载力方程式的可靠性。为此,收集了从四个现场获得的17个静载荷测试数据,并基于这些测试数据获得了嵌岩桩的极限承载力。选择了三个在实践中广泛使用的承载力方程进行可靠性分析。它们是AASHTO方法(1996年),Carter&Kulhawy方法(1988年)和FHWA方法(1999年)。承载力值的比较表明,FHWA方法平均预测的承载力最接近实测承载力,而Carter&Kulhawy方法(1988)和AASHTO方法(1996)一致地保守地预测了承载力,并且具有可接受的差异。

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