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Numerical modeling of interaction between dip-slip fault and shallow foundation

机译:倾滑断层与浅层基础相互作用的数值模拟

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摘要

Many engineering structures have been destroyed due to differential displacements on the ground surface, resulting in the instability of foundations and structures. An Earthquake fault rupture may cause severe damages even to structures designed to be strong against dynamic excitations. This study investigates the interactions of shallow foundations with the faulting incident, and with soil, reinforced with geo-grids, for the cases of normal and reverse faulting. The results of the numerical studies were verified with the results of experiments conducted at the University of Dundee and the University of Waseda. The subroutine of the new behavioral model was developed and then applied in the numerical modeling. A comparison between the numerical and model test results showed good agreement between numerical and experimental results. Then, the foundation rotations and its separation from the soil during fault rupture, the location of the fault outcropping, the vertical displacement of the ground surface, and the effect of soil reinforced with geo-grids on the fault rupture path and surface displacement, some of them for the first time, were predicted and reported in this paper. The amounts of differential displacement (slope) and surface displacement at the surface were reduced when soil was reinforced with geo-grids. Finally, this research concludes with a few parametric studies.
机译:由于地面上的不同位移,许多工程结构被破坏,导致基础和结构的不稳定性。地震断层破裂甚至可能对设计成能抵抗动态激励的结构造成严重损害。本研究调查了正向和反向断层情况下浅层地基与断层事件以及土工格栅加筋的土壤之间的相互作用。数值研究的结果由邓迪大学和早稻田大学进行的实验结果验证。开发了新行为模型的子例程,然后将其应用于数值建模。数值试验结果与模型试验结果的比较表明,数值试验结果与实验结果吻合良好。然后,断层破裂时地基的旋转及其与土壤的分离,断层露头的位置,地表的垂直位移以及土工格栅加筋的土壤对断层破裂路径和表面位移的影响,有些本文首次对它们进行了预测和报告。当用土工格栅加固土壤时,减少了表面的微分位移(坡度)和表面位移。最后,本研究以一些参数研究结束。

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