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Experimental Group Behavior of Grouted Deep Foundations

机译:灌浆深基坑的实验群行为

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Post-grouting of deep foundations following installation is a proven technique for enhancing axial resistance. The grouting is performed either below the tip of the foundation only (e.g., post-tip-grouted drilled shafts) or at both the side and the tip (e.g., jetted, side, and tip-grouted precast piles). The interaction of such foundations in group placement is currently unknown. This research focused on the group behavior of post-tip-grouted drilled shafts and jetted, side, and tip-grouted piles at a center-to-center spacing of three times the pile/shaft diameter. The study revealed that the post-tip-grouted drilled shafts acted independently within the group (i.e., negligible group interaction), whereas jetted, side, and tip-grouted piles behaved as a block under axial loading. It was determined that side grouting of a foundation prior to tip grouting significantly increases the grout pressure developed during tip grouting and helps in the formation of a tip grout bulb via a spherical cavity expansion process. Thus, the side and tip grouting of adjacent foundations within a group increases the confining stress and relative density of the soil mass within the group, resulting in block behavior under top-down loading. In contrast, tip-only grouted foundations showed little if any increase in radial stress and radial soil displacement, resulting in minimal improvement of the soil stiffness between shafts; as a result there was no block behavior and a negligible group effect at the tip.
机译:安装后对深层基础进行后灌浆是一种增强轴向阻力的成熟技术。灌浆既可以在地基尖端以下进行(例如,尖端后注浆后的钻杆),也可以在侧面和尖端(例如,喷射桩,侧面和尖端注浆的预制桩)进行。目前尚不清楚这些基础在小组布置中的相互作用。这项研究的重点是在桩/桩直径的三倍的中心距内,桩后注浆后的钻杆,喷射桩,侧桩和桩端的桩组性能。该研究表明,后注浆钻孔竖井在组内独立发挥作用(即,可忽略的组间相互作用),而喷射桩,侧注浆和桩端注浆桩在轴向载荷下表现为障碍。已经确定,在尖端注浆之前对基础进行侧向注浆会显着增加在尖端注浆过程中产生的灌浆压力,并有助于通过球形腔膨胀工艺形成尖端灌浆球。因此,一组内相邻基础的侧面和顶部灌浆会增加该组内土体的围压和相对密度,从而导致自顶向下荷载下的砌块行为。相比之下,仅尖端的灌浆基础在径向应力和径向土壤位移方面几乎没有增加,即使是竖井之间的土壤刚度的改善也很少。结果,没有阻塞行为,尖端的群效应也可以忽略不计。

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