首页> 外文期刊>International journal of geotechnical engineering >Static load test interpretation using the t-z model and LRFD resistance factors for auger cast-in-place (ACIP) and drilled displacement (DD) piles
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Static load test interpretation using the t-z model and LRFD resistance factors for auger cast-in-place (ACIP) and drilled displacement (DD) piles

机译:使用t-z模型和LRFD阻力因子对螺旋钻灌注桩(ACIP)和钻孔位移(DD)桩进行静载荷测试解释

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Static load test data for augered cast-in-place (ACIP) and drilled displacement (DD) piles were interpreted using the t-z model method. Eighteen load tests consisting of load-settlement and load transfer data were obtained from two different construction sites. A series of back-calculations were performed using the t-z model method to enhance the static load test data, which were then analyzed to obtain resistance bias factors for the currently used ACIP and DD pile design methods. The t-z model method enhanced load test data provides the ability to interpret field data for loading conditions beyond those measured during test. The resistance bias for the various design methods were then used to obtain the resistance factors based upon the traditional calibration approach. Furthermore, resistance factors were also obtained using probabilistic analysis based upon the t-z model method. The comparison of these two sets of resistance factor indicates that those obtained from the traditional calibration approach contain a wide range of magnitudes, while the resistance factors from the t-z model method design result in a consistent level of reliability.
机译:使用t-z模型方法解释了钻孔灌注桩(ACIP)和钻孔位移(DD)桩的静载荷测试数据。从两个不同的建筑工地获得了18个由载荷沉降和载荷传递数据组成的载荷测试。使用t-z模型方法进行了一系列的反计算,以增强静载荷测试数据,然后对其进行分析以获得当前使用的ACIP和DD桩设计方法的阻力偏差因子。 t-z模型方法增强的载荷测试数据提供了解释现场数据的能力,这些载荷数据超出了测试期间测得的载荷条件。然后,基于传统的校准方法,将各种设计方法的电阻偏差用于获得电阻系数。此外,还使用基于t-z模型方法的概率分析获得了阻力因子。这两组电阻系数的比较表明,从传统校准方法获得的电阻系数包含较大的幅度范围,而从t-z模型方法设计获得的电阻系数可确保稳定的可靠性。

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