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首页> 外文期刊>International journal of geomechanics >Analytical and Numerical Modeling of Soft Soil Stabilized by Prefabricated Vertical Drains Incorporating Vacuum Preloading
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Analytical and Numerical Modeling of Soft Soil Stabilized by Prefabricated Vertical Drains Incorporating Vacuum Preloading

机译:结合真空预压的预制垂直排水管加固软土的分析和数值模拟

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摘要

This paper describes the analytical formulation of a modified consolidation theory incorporating vacuum pressure, and numerical modeling of soft clay stabilized by prefabricated vertical drains, with a linearly distributed (trapezoidal) vacuum pressure for both axisymmetric and plane strain conditions. The effects of the magnitude and distribution of vacuum pressure on soft clay consolidation are examined through average time-dependent excess pore pressure and consolidation settlement analyses. The plane strain analysis was executed by transforming the actual vertical drains into a system of equivalent parallel drain walls by adjusting the coefficient of permeability of the soil and the applied vacuum pressure. The converted parameters are incorporated in the finite element code ABAQUS, employing the modified Cam-clay theory. Numerical analysis is conducted to study the performance of a full-scale test embankment constructed on soft Bangkok clay. The performance of this selected embankment is predicted on the basis of four different vacuum pressure distributions. The predictions are compared with the available field data. The assumption of distributing the vacuum pressure as a constant over the soil surface and varying it linearly along the drains seems justified in relation to the field data.
机译:本文描述了结合真空压力的修正固结理论的解析公式,以及通过线性垂直分布(梯形)真空压力在轴向对称和平面应变条件下预制的垂直排水管稳定的软粘土的数值模型。通过平均随时间变化的超孔隙压力和固结沉降分析,研究了真空压力的大小和分布对软粘土固结的影响。通过调节土壤的渗透系数和施加的真空压力,将实际的垂直排水系统转换成等效的平行排水系统,从而进行了平面应变分析。利用改进的Cam-clay理论,将转换后的参数合并到有限元代码ABAQUS中。进行了数值分析,以研究在软曼谷粘土上建造的全尺寸试验路堤的性能。根据四种不同的真空压力分布来预测所选路堤的性能。将预测与可用的现场数据进行比较。相对于现场数据,将真空压力作为常数分布在土壤表面并沿排水管线性变化的假设似乎是合理的。

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