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混凝土预制减沉桩在软粘土地基处理中的应用
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作者 李卫鹏 《广西水利水电》 2018年第3期57-60,共4页
为了避免新疆某拟建平原水库工程涵洞坝段加固处理后的复合地基沉降量和两侧普通坝段天然地基沉降差异过大,进而导致坝体沿着沉降差异较大部位产生剪切破坏,在涵洞两侧一定范围内的普通坝段地基布设了混凝土预制减沉桩。采用等效作用分... 为了避免新疆某拟建平原水库工程涵洞坝段加固处理后的复合地基沉降量和两侧普通坝段天然地基沉降差异过大,进而导致坝体沿着沉降差异较大部位产生剪切破坏,在涵洞两侧一定范围内的普通坝段地基布设了混凝土预制减沉桩。采用等效作用分层总和法,分别对预制桩处理后的涵洞坝段和采用了减沉桩处理的两侧坝段进行了桩土复合地基沉降计算。计算结果表明:涵洞两侧一定范围内的普通坝段地基采用减沉桩处理后,涵洞坝段和两侧坝段地基沉降量沿坝轴线方向沉降差异变小,沉降得到了均匀过渡,避免了坝体产生剪切破坏。该方法可供类似地基处理参考。 展开更多
关键词 软粘土地基 地基处理 减沉 等效作用分层总和法 群桩沉降计算
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A simplified approach for settlement calculation of pile groups considering pile-to-pile interaction in layered soils 被引量:5
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作者 杨明辉 张小威 赵明华 《Journal of Central South University》 SCIE EI CAS 2011年第6期2131-2136,共6页
A simplified approach is presented for the analysis of the settlement of vertically loaded pile groups. In order to simulate the nonlinear pile-to-pile interaction in pile groups, the soils along the piles are assumed... A simplified approach is presented for the analysis of the settlement of vertically loaded pile groups. In order to simulate the nonlinear pile-to-pile interaction in pile groups, the soils along the piles are assumed to behave as a series of nonlinear springs subjected to the shaft shear stress at the pile/soil interface. Considering the displacement reduction induced by the pile-to-pile interaction, the shear-deformation method is adopted to approximate the displacement field of the layered soils around the piles, and the equivalent stiffness of the springs is obtained. Furthermore, the load-settlement response of pile groups is deduced by modifying the load-transfer functions to account for the pile-to-pile interaction. The settlements of a laboratory pile groups computed by the presented approach are in a good agreement with measured results. The analysis on Contrastive parameters shows that the settlements of pile group decrease with the increase of the pile space and pile length, and the part of piles exceeding the critical pile length has little contribution to the beating capacity of the pile groups. 展开更多
关键词 pile groups SETTLEMENT pile-to-pile interaction load transfer shear-deformation method
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