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首页> 外文期刊>International journal of geomechanics >Effect of Jet-Grout Columns on the Seismic Response of Layered Soil Deposits
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Effect of Jet-Grout Columns on the Seismic Response of Layered Soil Deposits

机译:喷射浆柱对分层土壤沉积物地震响应的影响

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Ground-improvement techniques, such as jet-grout columns, may have positive effects on structures founded on soft soil when subjected to earthquake loading. The main objectives of this paper are first to evaluate the effects of soil-improvement width and depth on the ground response of a layered soil and, second, to define critical zones in which cemented columns might crack. A series of numerical calculations are performed by means of the finite-element method, considering a linear viscoelastic model for soil layers and rigid bedrock condition, and also by applying an advanced constitutive model for simulating the behavior of jet-grout columns. The soil profile consists of a 10-m loose sand layer overlain and underlain by a 5-m dense sand layer. The acceleration time recorded during the Loma Prieta earthquake in 1989 is used as the input motion. The results show that the seismic load is decreased or may increase as a result of ground improvement. In addition, it is shown that by applying an advanced model, possible crack zones in cemented columns can be identified.
机译:地面加固技术(例如喷射灌浆柱)在遭受地震荷载时可能会对软土地基上的结构产生积极影响。本文的主要目的是首先评估土壤改良宽度和深度对层状土壤地面响应的影响,其次,确定水泥柱可能破裂的关键区域。考虑到土层和刚性基岩条件的线性粘弹性模型,并通过应用先进的本构模型来模拟注浆柱的性能,通过有限元方法进行了一系列数值计算。土壤剖面由上覆10米的疏松砂层和下覆5米的致密砂层组成。输入运动使用了1989年Loma Prieta地震期间记录的加速时间。结果表明,由于地面改善,地震荷载减小或可能增大。此外,还表明,通过应用高级模型,可以识别胶合柱中可能存在的裂缝区域。

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