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Analysis of the corner effect on excavation behaviors

机译:转角对开挖行为的影响分析

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This paper presents three-dimensional finite-element studies on excavation problems. Large computer storage and computation time are normally required for the conventional finite-element analysis, for which the boundary should be located distant from the excavation zone so that convergence can be reached. In this paper the infinite element is incorporated into a three-dimensional finite-element computer program for minimizing the number of elements used. Research results indicate that adequate convergence for the wall deflection and ground surface settlement is obtained for infinite elements located at a distance of one wall depth. This substantially reduces the number of elements used in the analysis. Furthermore, two excavation case histories are provided to confirm the appropriateness of employing the infinite element as well as the corner effect on the deformation behavior. Based on the field observations and three-dimensional analysis of the case histories, it is found that the wall deformation at the short wall is smaller than that at the long wall. The wall deformation decreases with decreasing distance from the corner. These studies further verify the corner effect on the excavation behavior. [References: 17]
机译:本文提出了关于开挖问题的三维有限元研究。传统的有限元分析通常需要大量的计算机存储和计算时间,为此,边界应远离开挖区,以便可以收敛。在本文中,将无限元素合并到三维有限元素计算机程序中,以最小化使用的元素数量。研究结果表明,对于位于一个壁深距离处的无限元,可以获得足够的壁挠度和地表沉降收敛性。这大大减少了分析中使用的元素数量。此外,提供了两个挖掘案例历史记录,以确认采用无限元的适当性以及拐角效应对变形行为的影响。通过实地观察和对案例历史的三维分析,发现短壁的变形小于长壁的变形。壁变形随着距拐角距离的减小而减小。这些研究进一步验证了拐角对开挖行为的影响。 [参考:17]

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