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作 者:王幼明 汪四新 何高峰 张晓衡 WANG Youming;WANG Sixin;HE Gaofeng;ZHANG Xiaoheng(Shenzhen IBR Testing Co.,Ltd.Shenzhen 518049,China;Guangdong Green Building Engineering Quality Inspection and Evaluation Engineering Technology Research Center Shenzhen 518049,China;Shenzhen Institute of Building Research Co.,Ltd.Shenzhen 518049,China)
机构地区:[1]深圳市建研检测有限公司,深圳518049 [2]广东省绿色建筑工程质量检测评价工程技术研究中心,深圳518049 [3]深圳市建筑科学研究院股份有限公司,深圳518049
出 处:《广东土木与建筑》2024年第8期25-30,共6页Guangdong Architecture Civil Engineering
基 金:国家重点研发计划(2019YFB2102703):城市地面关键公共基础设施的性能评估、性能预测与安全预警。
摘 要:为使厚层软土地区花岗岩等“硬岩”为持力层的超长灌注桩的桩身弹性压缩量计算更加合理,通过对该类场地灌注桩抗压静载试验“荷载-沉降”数据进行分析,并采用有限元仿真计算和概率统计分析方法,得到了端阻比与长径比等参数的函数关系以及桩侧摩阻力分布系数的样本统计值,建立了通过长径比等参数估算桩身弹性压缩系数ξe的方法以及相应的简化计算公式。最后通过某案例计算与规范推荐的方法进行对比,验证该公式计算桩身弹性压缩量的准确性及便捷性。In order to calculate the elastic compression of the pile body of ultra-long bored piles with hard rocks such as granite as the load-bearing layer in thick soft soil areas more reasonably,the"load-settlement"data of compression static load tests of bored piles in this type of site were analyzed.By using finite element simulation and probability statistical analysis methods,the functional relationships of parameters such as end bearing ratio and length-to-diameter ratio,as well as the sample statistical values of pile side friction distribution coefficients were obtained.A method for estimating the elastic compression coefficientξe of the pile body based on parameters such as length-to-diameter ratio was established,along with a corresponding simplified calculation formula.Finally,through a case study comparing the calculated results with recommended methods in standards,the accuracy and convenience of the formula for calculating the elastic compression of the pile body were verified.
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