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Implications of rising groundwater level on structural integrity of underground structures - investigations and retrofit of a large building complex

机译:地下水位上升对地下结构结构完整性的影响-大型建筑群的调查和改造

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Purpose - Groundwater levels (GWL) are rising in many cities in the world The purpose of this study is to present the multi-faceted approach adopted for examining the impact of a 3 m rise in GWL on the durability, stability and strength of the structural components of a building complex with 40,000 m2 basement. It also reports on the retrofit measures adopted to remedy the situation. Design/methodology/approach - The overall stability of the building complex was examined for the revised loading conditions as well as the need to strengthen the structurally deficient components to satisfy owner's requirement of a dry and operational basement without the dewatering operation. Structural conditions of the basement walls and a slab of the building complex were assessed based on code guidelines, visual observations, site investigations, analytical finite element model (FEM) studies and sound engineering judgement. Findings - About 25 percent of the existing basement slab was found to be structrally deficient to resist the applied hydrostatic load. A number of articulation and construction details were also found to be inadequate. Various options for retrofit for the deficient structural components and articulation details were examined and design details were presented for a cost-effective solution. Research limitations/implications - The presented methodology is general and can be adopted for similar situations. However, the presented solutions and conclusions are specific to the problem presented herein and modifications will be required for adoption to other situations. Practical implications - Practising engineers are made aware of the problem of rising GWL for underground structures. Practical information is presented for practising engineers to solve the problem of water leakage in a large basement. Originality/value - This paper presents an integrated approach for addressing the structural implications of rising groundwater level in an operational basement of a large building complex.
机译:目的-全世界许多城市的地下水位(GWL)都在上升。本研究的目的是介绍采用多方面的方法来研究GWL升高3 m对结构的耐久性,稳定性和强度的影响。地下室40,000平方米的建筑群的组件。它还报告了为纠正这种情况而采取的改造措施。设计/方法/方法-对建筑群的整体稳定性进行了检查,以查看修改后的载荷条件以及是否需要加强结构缺陷组件,以满足业主对不进行脱水操作的干燥和运营地下室的要求。根据规范指南,视觉观察,现场调查,分析有限元模型(FEM)研究和声音工程判断,评估了地下室墙壁和建筑群楼板的结构条件。研究发现-现有地下室楼板中约有25%在结构上不足以抵抗所施加的静水荷载。还发现许多清晰度和构造细节不足。检查了用于缺陷结构部件和铰接细节的各种改装选项,并提出了设计细节,以提供一种经济高效的解决方案。研究的局限性/意义-所提出的方法是通用的,可用于类似情况。但是,提出的解决方案和结论是特定于此处提出的问题的,将需要修改才能采用其他情况。实际意义-使实践工程师意识到地下结构的GWL升高问题。为实践工程师提供了实用信息,以解决大型地下室的漏水问题。原创性/价值-本文提出了一种综合方法,用于解决大型建筑群的运营地下室中地下水位上升对结构的影响。

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