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Bearing capacity of reinforced and unreinforced sand beds over stone columns in soft clay

机译:软黏土中石柱上加筋砂床和无筋砂床的承载力

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A series of experiments on the unreinforced sand bed (USB) and geogrid-reinforced sand bed (GRSB) placed over a group of floating stone columns in soft clay and their numerical simulations have been conducted. Three-dimensional numerical simulations were performed using the finite-element package ABAQUS 6.12 for modeling the USB and GRSB placed over a group of stone columns floating in soft clay. In finite-element analysis, geogrid is modeled as an elasto-plastic material. Compared to unreinforced clay, 1.72-fold, 2.83-fold and 5.30-fold increases in bearing capacity can be achieved by the provision of only stone columns, stone columns with USB and GRSB, respectively. The critical thickness of USB and GRSB can be taken as equal to 0.3 times and 0.2 times the diameter of the footing; above this thickness, improvement in the bearing capacity is marginal. Both the improvement factor and stress concentration ratio of the stone columns with GRSB show an increasing trend with an increase in settlement. The optimum length of the group of floating stone columns with GRSB is six times the diameter of the column. Plastic strain developed in the stone column material is much higher than that in the geogrid planar sheet.
机译:在一组置于软粘土中的浮石柱上的非增强砂床(USB)和土工格栅增强砂床(GRSB)上进行了一系列实验,并进行了数值模拟。使用有限元软件包ABAQUS 6.12进行了三维数值模拟,以模拟USB和GRSB放置在漂浮在软粘土中的一组石柱上。在有限元分析中,土工格栅被建模为弹塑性材料。与未增强的粘土相比,仅提供石柱,分别配备USB和GRSB的石柱可实现承载力提高1.72倍,2.83倍和5.30倍。 USB和GRSB的临界厚度可取为底座直径的0.3倍和0.2倍;超过此厚度,则承载力的改善很小。带有GRSB的石柱的改善因子和应力集中率均呈现出随沉降增加的趋势。 GRSB浮石柱组的最佳长度是柱直径的六倍。石柱材料中产生的塑性应变远高于土工格栅平板中的塑性应变。

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