Analysis of vertical bearing capacity of super-long piles in more fractured and softer rock masses

Jinxi Wang, H. Tang, Jiangbo Xu
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Abstract

Previous studies capacity of rock-socketed piles have focused on the load bearing characteristics of intact and more intact rocks embedded in the pile end, while this paper focuses on the vertical load bearing analysis of piles in more fractured rock masses. Combined with the static load test on a high-rise project in Wuhan, the pile bearing capacity is estimated by different codes and compared with the measured results. The results show that: “Technical Code for Building Pile Foundations” and “Standard for Geotechnical Investigation of Tall Buildings” have a high estimate of the bearing capacity, which is on the dangerous side, while “Technical Code for Building Foundation in Hubei Province” has a small estimate of the bearing capacity, which is 2.4 times of the measured value. Pile length, pile diameter, rock socket depth and bedrock strength directly affect the estimation of bearing capacity, for the softer rock masses in the super-long pile codes estimation value deviation is large, must use static load test to determine the ultimate bearing capacity. The test results can be used as a reference for the design of super-long piles in more fractured and softer rock masses.
裂隙较软岩体中超长桩竖向承载力分析
以往对嵌岩桩承载力的研究主要集中在桩端内嵌完整和较完整岩石的承载特性上,而本文主要针对较破碎岩体中桩的竖向承载分析。结合武汉某高层工程的静载试验,采用不同规范对桩承载力进行了估算,并与实测结果进行了比较。结果表明:《建筑桩基技术规范》和《高层建筑岩土工程勘察标准》对承载力的估计较高,处于危险水平,而《湖北省建筑基础技术规范》对承载力的估计较小,为实测值的2.4倍。桩长、桩径、岩槽深度和基岩强度直接影响承载力的估算,对于较软岩体中的超长桩规范估算值偏差较大,必须采用静载试验确定极限承载力。试验结果可为裂隙较多、岩体较软的超长桩的设计提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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