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Prediction of deformations by means of finite element computation and stress path testing technique

机译:通过有限元计算和应力路径测试技术预测变形

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As a first step in this investigation the deformations of foundation layers underneath different sections of Alibey Dam, were predicted by means of numerical analysis. The foundation soil was modelled by using plain-strain finite element method andstress-strain-consolidation behaviour was calculated by means of coupled analyses utilising Plaxis programme developed for such problems. In the second step, the vertical and lateral effective stresses predicted from the first step were used in stress path application of the experimental work in the laboratory. Block samples were brought to the predicted initial field stress conditions in an extended type of Rowe Cell. The triaxial test specimens prepared from these blocks were tested trader anisotropicstress increments allowing consolidation periods in accordance with the field conditions. In five sections (B22, B18, B23, B24 and B9 axis) considering two different depths in each, the vertical strains predicted from numerical analyses, experimental work and the field measurements were compared and found to be in good aggrement.
机译:作为本研究的第一步,通过数值分析预测了替代坝不同部分的基础层的变形。通过使用普通菌株有限元法建模的基础土壤,通过利用用于此类问题的耦合分析来计算Andstress - 应变 - 整合行为。在第二步中,从第一步预测的垂直和横向有效应力用于实验室实验工作的应力路径应用。在扩展类型的RowE细胞中被带到预测的初始场应力条件下块样本。由这些嵌段制备的三轴试样进行了测试的交易者各向异性杆状增量,允许根据现场条件的合并期。在考虑每个不同深度的五个部分(B22,B18,B23,B24和B9轴)中,比较了从数值分析,实验工作和场测量预测的垂直菌株,并发现良好的聚。

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