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Prediction of bearing capacity for rock-socketed under-reamed uplift piles based on Hoek-Brown failure criterion

机译:基于Hoek-Brown失效标准的岩石槽隆起桩轴承能力预测

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Piles are often designed to resist uplift actions resulting from wind, wave, earthquake and underground water in high-rise buildings and long-span bridges. Rock-socketed under-reamed uplift pile can bear larger capacity with better performance, while its theoretical study is lagging behind the application, especially the prediction of bearing capacity. Based on Hoek-Brown failure criterion of rock, a new simplified calculation formula is deduced according to the similar analysis and prediction method of capacity of under-reamed piles in soil. Two static loading tests were conducted on piles in Zifeng tower in Nanjing. The comparisons were made among predictions resulted from the simplified formula, other empirical methods and field test results in Zifeng including other test data in literatures. The results from simplified calculation formula agree well with the test results.
机译:桩常被设计用于抵抗高层建筑和长跨度桥梁中的风力,波,地震和地下水引起的隆起动作。摇滚膨胀的下隆起桩可以具有更大的能力,性能更好,而其理论研究落后于应用后,尤其是承载力的预测。基于岩石的Hoek-Brown失效标准,根据土壤中覆盖桩产能的类似分析和预测方法推导出新的简化计算公式。在南京淄博塔的桩上进行了两次静态装载试验。在简化公式,Zifeng的其他经验方法和现场测试结果包括在文献中的其他测试数据,在预测中进行了比较。简化计算公式的结果与测试结果很好。

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