首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Experimental study, numerical modeling of and axial prediction approach to base grouted drilled shafts in cohesionless soils
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Experimental study, numerical modeling of and axial prediction approach to base grouted drilled shafts in cohesionless soils

机译:无粘性土基层注浆钻杆的试验研究,数值模拟和轴向预测方法

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The pressure grouting of drilled shaft tips has become popular worldwide due to its effectiveness in mobilizing a larger portion of the available tip resistance under service displacements. This paper presents experimental and numerical studies on the load transfer mechanism and factors controlling the axial response of base grouted drilled shafts in cohesionless soils. The study found that the increased axial capacity of grout-tipped drilled shafts under service loads and displacements depended mainly on preloading effects and the increased tip area provided by the grouting process. A simple prediction approach for estimating the tip capacity of grouted shafts utilizing cone penetration resistance was suggested based on the results of the study. The validity of the proposed approach was verified by the analysis of full-scale case studies of grouted shafts reported in the literature.
机译:由于在工作位移下可动员大部分可用的端头阻力,因此钻孔轴端头的压力灌浆已在世界范围内流行。本文介绍了在无粘性土中荷载灌输机理和控制底部注浆钻轴轴向响应的因素的实验和数值研究。研究发现,在使用载荷和位移的作用下,灌浆钻孔的钻杆的轴向能力的增加主要取决于预压效果和灌浆过程所提供的尖端面积的增加。在研究结果的基础上,提出了一种简单的预测方法,该方法可利用锥孔抗穿透性来估算注浆井的桩头能力。通过对文献中报道的灌浆井的全面案例研究的分析,验证了该方法的有效性。

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