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首页> 外文期刊>Journal of Performance of Constructed Facilities >Failure of a Retaining Structure in a Metro Station Excavation in Nanchang City, China
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Failure of a Retaining Structure in a Metro Station Excavation in Nanchang City, China

机译:南昌市地铁车站开挖中固定结构的破坏

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This paper presents the failure of a retaining structure in special geologic conditions featuring a high level of groundwater and very thick sand layers in a metro station excavation in Nanchang, China. The retaining structures were composed of cast-in-place piles, three-axis mixing piles, and bislurry grout. Although much effort was expended in designing piles that would perform well in the specific geologic conditions, failure, including sand boils and ground collapse, still occurred. Remedial measures were taken to prevent further large failures and to maintain the stability of the strut systems. The reasons for the failure were investigated afterward by analyzing the monitoring data and conducting a series of field and laboratory tests on core samples of the three-axis mixing piles and bislurry locations. The bislurry grouting was unsuccessful in preventing seepage of ground water due to the low permeability of upper clay and silty sand, which became the main reason for the failure. Instead, high-pressure rotating-jet grouting proved to be an effective way to form a waterproof wall during excavation in these site conditions. This case provides a wealth of experience and guidance for future similar excavations with regard to mitigating this type of failure. (C) 2015 American Society of Civil Engineers.
机译:本文介绍了在特殊地质条件下,南昌地铁车站开挖中具有高地下水位和非常厚的沙层的挡土墙结构的失效情况。挡土结构由现浇桩,三轴搅拌桩和双浆灌浆组成。尽管在设计能够在特定地质条件下发挥良好作用的桩方面投入了大量精力,但仍然发生了包括砂bo和地面塌陷在内的破坏。采取了补救措施以防止进一步的大故障并保持支撑系统的稳定性。随后,通过分析监控数据并对三轴搅拌桩和双浆位的核心样品进行了一系列的现场和实验室测试,调查了失败的原因。由于上层黏土和粉砂的低渗透性,双浆注浆未能成功地阻止地下水的渗漏,这成为了失败的主要原因。取而代之的是,高压旋转喷射灌浆被证明是在这些现场条件下开挖过程中形成防水墙的有效方法。该案例为减轻此类故障提供了丰富的经验和指导,可供以后进行类似的挖掘工作。 (C)2015年美国土木工程师学会。

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