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Study on One-Dimensional Large Deformation Consolidation of Soil considering Liquid Phase Inertia

机译:考虑液相惯性土壤一维大变形固结的研究

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Classical consolidation theory ignores the influence of soil liquid phase acceleration. This paper considers the influence of liquid phase acceleration on the stress balance equation during the consolidation of soil, obtains the one-dimensional equation governing quasi-hydrostatic consolidation under large deformation with the consideration of the inertia of the liquid phase, and solves the governing equations by finite element method. The calculation results show that the liquid phase inertia effect of the soil will cause excess pore pressure in the soil, obviously increasing in the initial stage of consolidation, and the self-weight of soil exerts an influence on the excess pore pressure at the later stages of consolidation. The liquid phase inertia effect parameter Dc determines the strength of the liquid phase inertia effect. A larger Dc value results in a larger increase in the excess pore pressure, and the later the liquid phase inertial effect occurs, the longer the duration is. In the large strain consolidation analysis, especially at the initial stage of consolidation, it is necessary to consider the liquid phase inertia effect of the soil.
机译:古典固结理论忽略了土壤液相加速的影响。本文认为液相加速对土壤固结期间应力平衡方程的影响,获得了在液相惯性的大变形下进行了一维方程,以液相惯性,解决了控制方程通过有限元方法。计算结果表明,土壤的液相惯量效应将导致土壤中的过量孔隙压力,显然在固结初始阶段增加,土壤的自我重量对后期阶段对多余孔隙压力产生影响合并。液相惯量效应参数DC确定液相惯量效应的强度。较大的直流值导致过量孔隙压力较大,并且后续发生液相惯性效应,持续时间越长。在大应变固结分析中,特别是在整合的初始阶段,有必要考虑土壤的液相惯性效应。

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