研究多层地基固结沉降中沉降带内压缩性的变化

Duong Hong Tham
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引用次数: 1

摘要

本文研究了基于沉降层压缩性变化的多层地基固结沉降预测方法。采用麻省理工学院(MIT)的近似建议,将每两层转换为具有等效固结系数Cv的单层,初步解决了这一非线性问题。将各可压缩层沉降区渗透性的变化考虑为可压缩性和压缩系数的变化,进一步求解。在固结过程中,新的k值被更新,同时产生新的固结系数Cv和mv;然后将可压缩层组合并转换为等效性质或固结厚度。在体积压缩系数mv一定的情况下,考虑沉降区压缩性的变化,对备选方案的沉降进行初步分析,结果表明,固结沉降将大于常规分析方法和Plaxis模型数值计算方法的沉降。本研究结果与其他模型(假定产生相同的随时间变化的固结)和数值模型(Plaxis)的比较结果表明,多层地基的固结需要更严格的研究。这是一个更详细的修改来接近保守的预测时间的固结和最终固结沉降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studying the consolidation settlement for multi-layered foundation concerning the change in compressibility within the settlement zones
This paper deals with the approach of predicting the consolidation settlement for a multi-layered foundation concerning the change in the compressibility of the settlement layers. This non-linear problem is preliminarily solved by using the Massachusetts Institute of Technology’s (MIT’s) suggestion of approximation, according to which every two layers are converted into a single layer having an equivalent coefficient of consolidation Cv. This paper aims to further the solution by considering the variation of the permeability in the settlement zones of each compressible layer as a change in the compressibility and coefficient of compression. During consolidation, the new value of k is updated, resulting in a new coefficient of consolidation Cv and mv simultaneously; then compressible layers are combined and converted into either equivalent properties or thickness of consolidation. In case the coefficient of volume compression mv is kept to be constant, and the change in the compressibility of the settling zone is taken into account as in this study, preliminary results on the settlement of the alternatives indicate that the consolidation settlement will be greater than that of the conventional approach of analysis and the numerical computation by Plaxis model. The results of the comparison between this study and those of the other models _that are assumed to yield the same time-dependent consolidation_ and numerical model Plaxis indicate that the consolidation for multi-layered foundation requires a more rigorous study. This is a more detailed modification for coming closer to a conservative prediction of the time of consolidation and final consolidation settlement.
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