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Mechanism of buttress walls in restraining the wall deflection caused by deep excavation

机译:支撑墙在抑制深基坑引起的墙体变形中的作用机理

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摘要

This objective of this study is to investigate the mechanism and characteristics of buttress walls in restraining the wall deflection in deep excavations. The three-dimensional finite element method was used to carry out a series of parametric studies on the length, spacing, thickness, depth, and demolished sequence of buttress walls. The results indicated the following: when buttress walls were demolished along with excavation, the flexural rigidity enhanced by buttress walls to the diaphragm wall was unable to effectively reduce the deflection of a diaphragm wall; the effect of a buttress wall restraining the wall deflection mainly came from the frictional resistance between the surface of the buttress wall and the surrounding soils, thus, a longer length of buttress wall provided a greater effect. When the buttress wall was maintained during excavation, the buttress wall could effectively restrain the wall deflection; in addition to the frictional resistance between the surface and surrounding soils, the flexural rigidity of buttress walls could provide restraining effects on the deformation of the diaphragm wall. The influence of the thickness of a buttress wall on the wall deflection was insignificant for the maintained buttress wall. Under the conditions of equivalent total length of buttress wall, the restraining effect of increasing the length of a buttress wall was greater than that resulting from reducing the spacing between buttress walls. To effectively utilize the flexural rigidity enhanced by buttress walls to the diaphragm wall, buttress walls above the final excavation should be maintained until the end of excavation.
机译:本研究的目的是研究支撑墙在抑制深基坑中墙体变形方面的作用机理和特征。使用三维有限元方法对支撑墙的长度,间距,厚度,深度和拆除顺序进行了一系列参数研究。结果表明:随着开挖拆除支护墙,支护墙对隔板墙的抗弯刚度不能有效地减小隔板墙的挠度。支撑壁对壁挠度的抑制作用主要来自支撑壁表面与周围土壤之间的摩擦阻力,因此,支撑壁越长,​​其作用越大。在开挖过程中对支护墙进行维护时,支护墙可以有效地抑制墙体变形。除了表面与周围土壤之间的摩擦阻力外,支撑壁的抗弯刚度还可以对隔板壁的变形提供抑制作用。支撑壁厚度对壁挠度的影响对于保持的支撑壁而言是微不足道的。在支壁总长度相等的条件下,增加支壁长度的抑制作用大于减小支壁之间的间距所产生的抑制作用。为了有效地利用由支撑壁增加到隔板壁的抗弯刚度,应保持最终开挖上方的支撑壁直到开挖结束。

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