Finite difference method for one-dimensional nonlinear consolidation of soft ground under uniform loads
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TU471.8

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    Abstract:

    In the calculation of one-dimensional soft clay ground consolidation in deep soil, initial stress and additional effective stress distributions in soil greatly influence the degree of consolidation of ground. With regard to this problem, one-dimensional nonlinear consolidation governing equations of soft ground under uniform loads are derived and solved with the finite difference method, based on the assumptions that the initial stress in soil varies with the ground depth, and the additional effective stress caused by external loads changes with both ground depth and consolidation time, as well as the hyperbolic model of the soil stress-strain relationship. Formulas for the degree of consolidation and settlement of ground are presented. A case study shows that the degree of consolidation of ground calculated with the finite difference method agrees with the traditional analytical solution, and the computational efficiency of the finite difference method can be effectively improved when the segmental calculation method is used throughout the consolidation process. The results of another example show that the settlement of ground calculated with the finite difference method agrees with the in-situ data. The suggested method can greatly simplify the consolidation calculation and is of high applicative value in engineering.

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赵明华,贺成斌,马缤辉,等.均布荷载下软土地基一维非线性固结的有限差分法[J].水利水电科技进展,2016,36(3):26-30.(ZHAO Minghua, HE Chengbin, MA Binhui, et al. Finite difference method for one-dimensional nonlinear consolidation of soft ground under uniform loads[J]. Advances in Science and Technology of Water Resources,2016,36(3):26-30.(in Chinese))

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  • Received:
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  • Online: May 06,2016
  • Published: May 05,2016
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