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Forensic Investigation of a Slurry Wall Failure: A Case Study

机译:泥浆墙故障的法医调查:一个案例研究

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The use of numerical modelling in solving geotechnical problems has significantly increased in the past two decades due to its widespread acceptance by geotechnical engineers and the rapid growth in computing power. In this work the failure of a slurry wall system which was the subject of a dispute between two contractors is investigated. The failed slurry wall was part of an excavation shoring system for a power plant intake structure in Australia. The construction sequence provided by the wall designer/contractor was not followed by the main contractor. The slurry wall failed and resulted in flooding of the excavation and significant ground deformations. This was followed by extensive and costly remediation works. The main contractor believed that the adopted construction procedure was not responsible for the failure, but its inadequate design was. This paper presents the methodology and results of modelling undertaken of the slurry wall installation to determine the magnitudes of induced stresses and displacements in the wall as a result of the adjacent excavation for two scenarios, "as designed" and "as constructed". The analysis was carried out utilizing the FLAC 2D program (Itasca group) for a plane strain case, and its built-in elastic-plastic Mohr-Coulomb stress-strain model.
机译:在过去的二十年中,由于数值模型在岩土工程师中的广泛接受以及计算能力的快速增长,在解决岩土问题中使用数字模型的数量已大大增加。在这项工作中,研究了两个承包商之间发生争议的泥浆墙系统的故障。发生故障的泥浆墙是澳大利亚发电厂进水口结构的挖掘支护系统的一部分。墙面设计师/承包商提供的施工顺序并未由主承包商遵循。泥浆墙破裂,导致开挖洪水和严重的地面变形。随后进行了广泛且昂贵的修复工作。主承包商认为所采用的施工程序不对失败负责,但对设计不充分的原因负责。本文介绍了泥浆墙安装的方法学和建模结果,以确定两种情况(“设计”和“建造”)下相邻开挖的结果引起的墙体中的应力和位移的大小。分析是使用FLAC 2D程序(Itasca组)针对平面应变情况及其内置的弹塑性Mohr-Coulomb应力应变模型进行的。

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