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Full-scale coupled torsion and lateral response of mast arm drilled shaft foundations

机译:桅杆钻轴基础的全尺寸耦合扭转和横向响应

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Drilled shaft foundations supporting mast arm assemblies are subjected to significant torsion and lateral load during severe wind loading (e.g., hurricane). Past centrifuge studies in granular soils suggest that the design of such foundations should be performed for a coupled load case, since the lateral resistance is considerably reduced by the concurrent application of torsion. However, current design practice still considers lateral load and torsion independently due to the lack of field verification of centrifuge results. This paper reports on a full-scale test program to investigate the coupled load behavior of drilled shafts. A novel load test setup (with a heavy-duty mast arm assembly) and instrumentation were used for the combined torsion and lateral loading (e.g., wind loading). The study revealed a significant reduction in lateral resistance due to the influence of torque as observed from previous centrifuge studies. Torsional resistance was reduced (approximately 20%) by the impact of lateral load when compared with the anticipated torsional resistance based on unit skin friction values, derived from the axial load test results (i.e., no influence of lateral load). A comparison of measured torsional resistance during the combined loading with the predicted values using different approaches was also made. O'Neill and Hassan's beta (beta) method (sand) and alpha method (clay) are found to predict the torsional resistance reasonably well (+/- 10%), while all other methods based on the standard penetration test and cone penetration test considered in the study overpredicted or underpredicted the resistance.
机译:支撑桅杆臂组件的钻孔轴基础会在剧烈的风荷载(例如飓风)中承受很大的扭转和横向载荷。过去在粒状土壤中进行的离心研究表明,这种基础的设计应针对耦合载荷情况,因为同时施加扭转会大大降低侧向阻力。然而,由于缺乏对离心机结果的现场验证,目前的设计实践仍独立考虑侧向载荷和扭转。本文报告了一个全面的测试程序,以研究钻探轴的耦合载荷行为。一种新颖的载荷测试装置(带有重型桅杆臂组件)和仪表用于扭转和侧向载荷(例如风载荷)的组合。该研究表明,由于先前的离心机研究中观察到的扭矩影响,侧向阻力显着降低。与基于轴向载荷测试结果得出的基于单位皮肤摩擦值的预期抗扭力相比,受横向载荷的影响,抗扭力降低了(约20%)。还对使用不同方法的组合载荷过程中测得的扭转阻力与预测值进行了比较。发现O'Neill和Hassan的beta(β)法(砂)和alpha方法(黏土)可以很好地预测抗扭强度(+/- 10%),而所有其他方法均基于标准渗透测试和圆锥渗透测试研究中考虑的阻力过高或过低。

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