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Analytical solution for one-dimensional consolidation of double-layered soil with exponentially time-growing drainage boundary:

机译:排水时间呈指数增长的双层土一维固结解析解:

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In this article, the exponentially time-growing drainage boundary is introduced to study the one-dimensional consolidation problem of double-layered soil. First, the one-dimensional consolidation equations of soil underlying a time-dependent loading are established. Then, the analytical solution of excess pore water pressure and average consolidation degree is obtained by utilizing the method of separation of variables when the soil layer is separately undergone instantaneous load and single-stage load. The validity of the present solution is proven by the comparison with other existing analytical solution. Finally, the influence of soil properties and loading scheme on the consolidation behavior of soil is investigated in detail. The results indicate that, the present solution can be degraded to Xie’s solution utilizing Terzaghi’s drainage boundary by adjusting the interface parameter, that is to say, Xie’s solution can be regarded as a special case of the present solution. The interface parameter has a significant influence on the excess pore water pressure of soil, and the larger interface parameter means the better drainage capacity of the soil layer.
机译:本文介绍了指数增长的排水边界,以研究双层土的一维固结问题。首先,建立了时变荷载作用下土体的一维固结方程。然后,利用土层分别承受瞬时荷载和单阶段荷载时的变量分离方法,获得了超孔隙水压力和平均固结度的解析解。通过与其他现有分析解决方案的比较证明了本解决方案的有效性。最后,详细研究了土壤性质和加载方式对土壤固结特性的影响。结果表明,通过调整界面参数,可以利用Terzaghi的排水边界将当前解决方案降级为Xie的解决方案,也就是说,谢的解决方案可以视为本解决方案的特例。界面参数对土壤的过高孔隙水压力有显着影响,界面参数越大表示土壤层的排水能力越好。

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