复杂形状深坑装置对附近房屋影响的模拟

I. Majewskа, N. Blashchuk, V. Gubashova
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摘要

在现有建筑狭小的工作空间中建造地下空间最常见的方法是用桩或连续墙进行基坑围栏的施工,并逐步开挖围栏内的土壤。同时,有必要制定可靠的围栏设计,既保证围栏的稳定性损失和有限的变形,又保证相邻结构的过度附加变形和超载,这些变形和超载会对挡土墙的回填面施加压力,开挖的围栏。在工作空间狭小、围栏结构平面和高度形状复杂的情况下,采用已开发的二维公式计算挡土墙的方法是不正确的,因为它没有考虑围栏结构单元空间工作的影响。提出了一种深基坑围护结构的应力-应变状态空间模拟方法,并对未来建筑地下部分的布置进行了后续开挖。在一个具有复杂地形和不均匀土层的场地中,考虑一个非线性结构的坑。研究了基坑开挖对附近若干未完工既有建筑的SSS的影响;已考虑到工作的分阶段进行。通过建模,为基坑桩围的安装和保证露天基坑边坡的稳定性提供有效的设计方案。在PLAXIS 3D CONNECT Edition V21.01中创建三维计算模型,可以研究围栏的施工和随后的挖掘对位于坑附近的现有建筑物的影响,并获得围栏本身结构的变形和力。
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SIMULATION OF THE INFLUENCE OF THE DEVICE OF A DEEP PIT OF COMPLEX SHAPES ON NEARBY LOCATED HOUSES
The most common method of constructing an underground space in the tight working space of an existing building is the construction of a foundation pit fence carried out of piles or the diaphragm wall with a gradual excavation of the soil within the fence. At the same time, it is necessary to develop a reliable design of the fence, which guarantees both the absence of loss of stability by the fence and its limited deformations, and the absence of excessive additional deformations and overloading of adjacent structures that put pressure on the surface of the backfill of the retaining wall, the fence of the excavation. In conditions of the tight working space and a complex shape of the fence structure in terms of plan and height, the use of the developed methods for calculating retaining walls in two-dimensional formulation is incorrect, since it does not take into account the effect of the spatial work of the structural elements of the fence. Methods for spatial modeling of the stress-strain state of a deep excavation fencing with subsequent excavation of soil for the arrangement of the underground part of the future building are proposed. A pit of a non-linear configuration is considered in a site with a complex topography and inhomogeneous layering of soils. The influence of excavation of a foundation pit on the SSS of a number of unfinished existing buildings located nearby has been studied; the phasing of the work has been taken into account. Modeling was carried out to substantiate effective design solutions for the installation of pile fencing of the excavation and ensuring the stability of the slopes of the open excavation. The creation of a three-dimensional calculation model in PLAXIS 3D CONNECT Edition V21.01 made it possible to investigate the impact of the construction of the fence and subsequent excavation on existing buildings located in the close proximity of the pit and to obtain deformations and forces in the structure of the fence itself.
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