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A study of failure mechanisms of deep excavations in soft clay using the finite element method

机译:有限元法研究软黏土深基坑破坏机理

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In this study, four failure mechanisms of excavations were investigated using the finite element method (FEM) with reduced shear strength. Center posts were considered in this finite element model. Both the elastic and elastoplastic support systems were used for comparison. The results showed that when the elastoplastic support system was used, reasonable stability of the excavations was estimated by the FEM. The yielding of the support system caused failures of the excavations. When the elastic support system was used, the FEM overestimated the stability of the excavations. The failures of these excavations were due to a large soil heave present at the excavation bottoms. For the two excavations in thick clay, the horizontal struts were bent until yield due to an upward movement of the center posts and a downward sinking of the wall. The yielding of the struts was followed by the yielding of the wall and failures of the excavations. For the remaining two excavations, which had either a shallow hard stratum or an insufficient support system, the failure was caused by the yielding of the wall due to an inward movement of the soil and the yielding of the struts because of the transfer of a large axial load from the wall. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,使用有限元方法(FEM)来研究开挖的四种破坏机理,这些机理具有降低的抗剪强度。在此有限元模型中考虑了中心柱。弹性和弹塑性支撑系统均用于比较。结果表明,当采用弹塑性支撑系统时,有限元法估计了开挖的合理稳定性。支撑系统的屈服导致挖掘失败。当使用弹性支撑系统时,FEM高估了开挖的稳定性。这些开挖的失败是由于开挖底部存在巨大的土沉。对于在厚黏土中的两个开挖,由于中心柱的向上运动和墙的向下下沉,水平支柱被弯曲直到屈服。支柱的屈服之后是墙的屈服和开挖的破坏。对于剩下的两个基坑,它们的地层较浅或坚硬,支撑系统不足,其破坏是由于土体向内运动引起的墙体屈服以及由于大面积的转移而引起的支柱屈服。壁的轴向载荷。 (C)2015 Elsevier Ltd.保留所有权利。

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