凸角对土钉开挖位移影响的研究

Abbas Rezamand, M. Afrazi, Mahdi Shahidikhah
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引用次数: 7

摘要

在深基坑开挖中,由于时间、预算和计算工具的限制,通常采用二维分析(平面应变分析)而不是三维分析来控制安全和位移因素。在大多数开挖工程中,开挖平面包括凸角和凹角。与凹角不同,对凸角使用二维分析是非保守的。本研究采用三维数值模拟方法,对比三维和二维结果,研究了土钉开挖中凸角对砂土(粒状土)和粘土(粘性土)两种土体的位移影响。研究结果表明,受凸角影响的区域(沿墙和凸角周围位移值大于相应二维值的区域)的长度约为开挖深度的0.75 ~ 1倍。结果还表明,虽然水平土钉更容易执行,并且可以防止交叉钉的干扰,但土钉在地平线上适当的角度(约10度)可以减少墙壁的位移。此外,发现在受凸角影响的区域对土钉施加方位角可以显著增加该区域的位移。最后,提出了增加土钉长度比减小土钉水平间距更有效地减小凸角影响区域的位移。这是一篇在知识共享署名许可(http://creativecommons.org/licenses/by/4.0/)条款下发布的开放获取文章,该许可允许在任何媒介上不受限制地使用、分发和复制,只要原始作品被适当引用。
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Study of Convex Corners' Effect on the Displacements Induced by Soil-Nailed Excavations
In deep excavations, because of time, budget, and computational tools limitation, two-dimensional analyses (plane strain analyses) rather than three-dimensional ones are often used for controlling factors of safety and displacements. In most excavation projects, the excavation plan includes convex and concave corners. Unlike concave corners, the use of two-dimensional analysis for convex corners is non-conservative. In the present study, by using three-dimensional numerical modeling and comparing 3D and 2D results, the effects of convex corners on the displacements induced by soil-nailed excavations are studied for two types of soil: sand (granular soil) and clay (cohesive soil). The results of the study indicate that the length of the zone affected by the convex corner (the zone along the wall and around the convex corner where the values of the displacements are greater than the corresponding two-dimensional values) is about 0.75 to 1 times the excavation's depth. The results also show that although the horizontal soil nails are executed easier and prevent interference of nails that cross, but applying an appropriate angle over the horizon (about 10 degrees) to the soil nails can reduce the wall displacements. Furthermore, it was found that applying azimuth to the soil nails in the area affected by the convex corner, significantly increased the displacements of this area. Lastly, it has been suggested that to reduce the displacements in the zone affected by the convex corner, increasing the length of the soil nails is more effective than decreasing their horizontal spacing.This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium provided the original work is properly cited.
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