基于三维岩土模型的osterberg-cell桩荷载试验反分析

Szilárd Kanizsár
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引用次数: 1

摘要

在三维岩土力学建模中,采用小应变本构模型对硬化土的参数进行适当的确定,对于真实地模拟土体的力学行为至关重要。从实验室和现场测试中得出这些参数的可能性相当有限,这些参数与布达佩斯深层建筑项目中发挥重要作用的所谓Kiscell粘土类似。在MOL校区高层建筑工程中完成的桩荷载试验结果证明是有用的数据来源。本文介绍了引用的Osterberg-cell桩荷载试验的情况以及用上述土模型对桩进行的建模。根据实验室测试指定的参数(如果没有基于文献的参数)可以通过接近负载测试结果进行微调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BACK ANALYSIS OF OSTERBERG-CELL PILE LOAD TEST BY MEANS OF THREE-DIMENSIONAL GEOTECHNICAL MODELING
In 3D geotechnical modelling it is essential for the realistic simulation of soil behavior that the parameters of the hardening soil with small strain constitutive model are specified appropriately. The possibility of deriving these parameters for very stiff cohesive soils similar to the so called Kiscell clay that has a significant role in deep construction projects in Budapest, from laboratory and field tests is rather limited. The results of the pile load test completed for the MOL Campus high-rise building project proved to be useful data source. The article presents the circumstances of the quoted Osterberg-cell pile load tests and the modelling of the pile performed by the above-mentioned soil model. The parameters specified on the basis of laboratory tests - and in absence of those based on literature - data can be fine-tuned by approaching the load test results.
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