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首页> 外文期刊>International journal of geomechanics >Significance of Spatial Variability of Deep Cement Mixed Columns on Reliability of Column-Supported Embankments
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Significance of Spatial Variability of Deep Cement Mixed Columns on Reliability of Column-Supported Embankments

机译:深层泥浆混合柱空间变异性的意义柱支撑堤的可靠性

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The spatial variability of mechanical properties of deep cement mixed (DCM) soil leads to uncertainty in performance of DCM column-supported embankments. While adequate safety levels can be achieved using a large factor of safety in a deterministic design, a reliability assessment helps to find an optimum safety level for the design by managing variability parameters. However, only few studies have been conducted on the performance of DCM column-supported embankments considering the variability of mechanical properties of columns. None of these studies have considered the strain-softening behavior of DCM columns along with the strength variability. This study investigates the reliability of a DCM column-supported embankment considering the spatial variability of mechanical properties and strain-softening behavior. Compressive strength, elastic modulus, and cohesion of DCM soil were considered as stochastic parameters in this study. The analysis was carried out using Monte Carlo method assuming three different cases of spatial variability. The reliability response of the embankment to changing coefficient of variation (COV), mean compressive strength, and the spatial correlation length are discussed. Results demonstrate that the reliability performance level of the embankment can be conservatively predicted by considering the variability of mean DCM column strength without considering the spatial variability. Based on the results of this study, a method is proposed to determine the overdesign factor required to achieve a target reliability for the embankment.
机译:深层水泥混合(DCM)土的机械性能的空间变异导致DCM柱支撑堤的性能的不确定性。虽然可以在确定性设计中使用大量安全系数可以实现足够的安全水平,但可靠性评估有助于通过管理可变性参数来找到设计的最佳安全水平。然而,考虑到柱的机械性能的变化,只有很少的研究已经对DCM色谱柱支撑的堤防的性能进行了性能。这些研究均未考虑DCM柱的应变软化行为以及强度变异性。本研究研究了考虑到机械性能的空间可变性和应变软化行为的DCM色谱柱支撑堤的可靠性。 DCM土壤的抗压强度,弹性模量和凝聚力被认为是该研究的随机参数。使用蒙特卡罗方法进行分析,假设存在三种不同的空间变异性。讨论了改变变化系数(COV),平均抗压强度和空间相关长度的堤防的可靠性响应。结果表明,可以保守堤防的可靠性性能水平,通过考虑平均DCM柱强度的可变性而不考虑空间可变性。基于本研究的结果,提出了一种方法来确定实现堤防目标可靠性所需的过度设计因子。

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