考虑坡度效应的穿越溶洞桩基竖向承载特性离心试验

CENTRIFUGAL TEST ON VERTICAL LOAD CARRYING CHARACTERISTICS OF PILE FOUNDATION CROSSING KARST CAVE CONSIDERING SLOPE EFFECT

  • 摘要: 为探明陡坡岩溶发育区桥梁桩基竖向承载特性,利用离心模型试验,研究了桩基础穿越溶洞且位于陡坡地段时,竖向荷载作用下陡坡坡度变化对桩基础荷载-沉降曲线、桩基础极限承载力、桩身轴力以及桩侧阻力的影响,给出影响桩基竖向承载特性的关键参数。结果表明:桩基竖向极限承载力随坡度增大而减小,与水平地基相比,坡度从30°增大到75°时,极限承载力的影响度从13.8%增大到45.3%。坡度大于60°对竖向极限承载力影响显著。桩身轴力从桩顶至桩底逐渐减小,其衰减速度和减幅均随坡度增大而减小;覆盖层内轴力衰减速度较慢,岩层内较快,在溶洞范围内不衰减。桩侧阻力在持力层内显著大于上部岩土层,在溶洞范围内为零。相同深度处桩侧阻力随坡度增大而减小,减幅随坡度增大而增大,且粉质黏土层内减幅小于中风化灰岩层。随坡度增大,桩基础竖向承载力中桩端阻力占比逐渐增大,桩侧阻力占比逐渐减小。坡度小于60°时,桩端阻力占比小于20%,坡度大于60°时,二者占比均出现明显转折,桩基础的类型由摩擦桩向端承桩转变。

     

    Abstract: To investigate the vertical bearing characteristics of bridge pile foundations in the steep slope karst development area, centrifugal model tests were conducted to investigate the effect of vertical loadings on the payload-settlement curve, on the ultimate bearing capacity, on the pile axial force and, on the pile side resistance when the pile foundation crosses the karst cave and is in a steep slope section, so as to give the key parameters affecting the vertical bearing characteristics of the pile foundations. The results show that the vertical ultimate bearing capacity of pile foundations decreases with increasing slope. The influence of the ultimate bearing capacity increases 13.8% - 45.3% when the slope at 30° - 75° compared to horizontal foundation. Slopes greater than 60° have a significant effect on the vertical ultimate load carrying capacity. The pile shaft force decreases gradually from the top to the bottom of the pile, and the decay rate and reduction decrease with increasing slope; the decay rate of the shaft force is slower in the overburden, faster in the rock layer, and no decay in the cave. The pile side resistance is significantly greater in the bearing layer than those in the upper rock and in the soil layer, and is zero in the cave. The pile side resistance decreases with increasing slope at the same depth, and the reduction rate increases with increasing slope, and the reduction rate in the powder clay layer is smaller than that in the moderately weathered greywacke layer. As the slope increases, the proportion of pile end resistance in the vertical bearing capacity of the pile foundation gradually increases, and the proportion of pile side resistance gradually decreases. For the slope less than 60°, the proportion of pile end resistance is less than 20%. As the slope greater than 60°, there is a significant turnaround in the proportion of both, with a shift in the type of pile foundations changes from friction piles to end bearing piles.

     

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