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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破坏准则的嵌岩欠扩孔抗拔桩承载力预测

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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:通常设计桩来抵抗高层建筑和大跨度桥梁中风,浪,地震和地下水引起的抬升作用。嵌岩欠扩孔抗拔桩具有较大的承载能力和较好的承载性能,但其理论研究滞后于应用,尤其是承载力的预测。根据岩石的Hoek-Brown破坏准则,根据欠扩孔土的承载力相似分析和预测方法,推导了新的简化计算公式。在南京紫峰大厦的桩基上进行了两次静载荷试验。比较了简化公式,其他经验方法和子丰的现场测试结果(包括文献中的其他测试数据)得出的预测结果。简化计算公式的结果与试验结果吻合良好。

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