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地面横向往返运动下可液化土层中桩基响应机理 被引量:23
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作者 袁晓铭 李雨润 孙锐 《土木工程学报》 EI CSCD 北大核心 2008年第9期103-110,共8页
通过非液化和液化土层中桩基础宏观震害现象以及等幅波与真实地震波振动台模型实验中桩和土层的加速度、位移、桩土相互作用力、桩动力p-y曲线、桩身弯矩与孔压发展过程对比,研究地震引起的地面横向往返运动下可液化土层中桩基响应机理... 通过非液化和液化土层中桩基础宏观震害现象以及等幅波与真实地震波振动台模型实验中桩和土层的加速度、位移、桩土相互作用力、桩动力p-y曲线、桩身弯矩与孔压发展过程对比,研究地震引起的地面横向往返运动下可液化土层中桩基响应机理。结果表明:非液化土层中上部结构惯性力控制着桩的反应性态,桩头加速度和桩身弯矩与土层加速度时程基本保持一致;液化过程中桩土相互作用力呈现明显增大现象,土体侧向刚度虽然衰减,但同时土层相对位移和桩土相对位移增大的影响更为强烈,即土层和桩土相对位移对桩土相互作用力增大的作用明显大于土体刚度衰减引起桩土相互作用力减小的作用;液化土层中桩土相互作用最大反应不是在土层加速度峰值时刻,而是土体相对位移达到最大时响应最大,此时土层孔压比为0.8左右;非液化土层中桩土相互关系为桩推土,惯性力是控制因素,液化土层中则为土推桩,土体位移起主要作用,而液化发展是这一转变决定性因素;常规仅考虑土体刚度衰减的拟静力方法不适合液化土层中桩基础地震响应计算分析。 展开更多
关键词 地震 往返运动 液化 土推桩
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Axial bearing behavior of super-long piles in deep soft clay over stiff layers 被引量:3
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作者 邹新军 赵明华 《Journal of Central South University》 SCIE EI CAS 2013年第7期2008-2016,共9页
In order to find out the bearing behavior of super-long piles located in deep soft clay over stiff layers around Dongting Lake, China, a test pile was first designed with the field loading test finished afterward. Bas... In order to find out the bearing behavior of super-long piles located in deep soft clay over stiff layers around Dongting Lake, China, a test pile was first designed with the field loading test finished afterward. Based on the measured test results, load transfer mechanism and bearing behavior of the pile shaft were discussed in detail. Then, by introducing a bi-linear model for shaft friction and the tri-linear model for pile tip resistance, respectively, the governing differential equation of pile soil system was set up by the load transfer method with the analytical solutions derived as well, taking into account the effect by stratified feature and various bearing conditions of subsoil, material nonlinearity, and the sediment under pile tip. Furthermore, formulas to determine the axial capacity of super-long piles by the pile top settlement were advised and applied to analyze the test pile. Good agreement between the predicted load settlement variations and the measured data is obtained to verify the validity of the present method. The results also show that, the axial bearing capacity of super-long piles should be controlled by the allowable pile top settlement, and buckling stability of the pile shaft should be paid attention as well. 展开更多
关键词 super-long pile SETTLEMENT load transfer model axial load capacity field test
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