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Theoretical solutions for consolidation of composite foundation considering non-uniform distribution of initial excess pore water pressure and radial-vertical combined flows in a granular column

机译:考虑初始超孔隙水压力和颗粒柱内径向-垂直组合流不均匀分布的复合地基固结的理论解

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In this paper, the consolidation problem of composite foundation is studied to consider the non-uniform distribution of initial excess pore water pressure along depth and the radialvertical combined flows in a granular column. The general theoretical solutions are obtained by introducing a new initial condition. The consolidation theory of composite foundation advanced herein is distinguished from the existing ones for that the initial excess pore water pressure is non-uniformly along depth in the foundation, and the radial flow in granular columns is considered. And thus, the three special cases for non-uniform distribution of initial excess pore water pressure which including the uniform, triangle and inverted triangle distribution are discussed, and the corresponding particular solutions of average excess pore water pressure and average degree of consolidation are derived. According to these analytical solutions, the relevant programs are coded. The influence of a few major factors on the consolidation course of composite ground is investigated, and the results are prepared in graph forms. Therefore, it is shown that the distribution of initial excess pore water pressure has obvious influence on the consolidation of composite ground with single drainage boundary; the consolidation of composite foundation is accelerated with the increase in the ratio of the top initial excess pore pressure to the bottom one in the foundation; the consolidation rate is at its maximum when the initial excess pore pressure distributes in the form of a inverted triangle and at its minimum when the initial excess pore pressure distributes in the form of a triangle; the smaller the value of kh/ks and n, that is, the smaller the degree of soil disturbance and the drainage radius of a granular column is, the faster the consolidation rate is; the higher the compression modulus of a granular column is, the faster the consolidation rate is.
机译:本文研究了复合地基的固结问题,考虑了初始超孔隙水压力沿深度的不均匀分布以及颗粒柱中的径向垂直组合流。一般的理论解是通过引入新的初始条件而获得的。本文提出的复合地基的固结理论与现有的固结理论的区别在于,初始的多余孔隙水压力沿地基的深度是不均匀的,并且考虑了颗粒柱中的径向流。因此,讨论了初始剩余孔隙水压力不均匀分布的三种特殊情况,包括均匀分布,三角形分布和倒三角形分布,并推导了平均剩余孔隙水压力和平均固结度的相应特殊解。根据这些分析解决方案,对相关程序进行编码。研究了几个主要因素对复合地基固结过程的影响,并以图形形式给出了结果。因此,表明初始超孔隙水压力的分布对具有单一排水边界的复合地基的固结有明显的影响。随着基础中顶部初始超额孔隙压力与底部底部超孔隙压力之比的增加,复合地基的固结加速。当初始超额孔隙压力以倒三角形的形式分布时,固结速率最大,而当初始超额孔隙压力以三角形的形式分布时,固结速率最小。 k h / k s 和n的值越小,即土壤扰动程度和粒状柱的排水半径越小,合并率是;粒状柱的压缩模量越高,固结速度越快。

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