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Numerical investigation of soil plugging effect inside sleeve of cast-in-place piles driven by vibratory hammers in clays

机译:黏土振动锤驱动灌注桩套管内土堵效应的数值研究

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摘要

During driving sleeve of cast-in-place piles by vibratory hammers, soils were squeezed into sleeve and then soil plugging was formed. The physic-mechanical properties of the soil plug have direct influence on the load transmission between the sleeve wall and soil plug. Nevertheless, the researches on this issue are insufficient. In this study, finite element and infinite element coupling model was introduced, through the commercial code ABAQUS, to simulate the full penetration process of the sleeve driven from the ground surface to the desired depth by applying vibratory hammers. The research results indicated that the cyclic shearing action decreases both in soil shear strength and in granular cementation force when the sleeve is driven by vibratory hammers, which leads to a partially plugged mode of the soil plug inside the sleeve. Accordingly, the penetration resistance of sleeve driven by vibratory hammers is the smallest compared to those by other installation methods. When driving the sleeve, the annular soil arches forming in the soil plug at sleeve end induce a significant rise in the internal shaft resistance. Moreover, the influence of vibration frequencies, sleeve diameters, and soil layer properties on the soil plug was investigated in detail, and at the same time improved formulas were brought forward to describe the soil plug resistance inside vibratory driven sleeve.
机译:在用振动锤击打灌注桩的套筒时,将土壤挤入套筒中,然后形成土壤堵塞。土塞的物理机械性能直接影响套管壁和土塞之间的载荷传递。但是,对此问题的研究还不够。在这项研究中,通过商业代码ABAQUS引入了有限元和无限元耦合模型,以通过应用振动锤来模拟从地面驱动到所需深度的套筒的完全穿透过程。研究结果表明,当用振动锤驱动套管时,循环剪切作用既降低了土的抗剪强度,又降低了颗粒固结力,导致套管内部的土塞部分堵塞。因此,与其他安装方法相比,由振动锤驱动的套筒的穿透阻力最小。驱动轴套时,在轴套末端的土塞中形成的环形土拱会显着提高轴的内部阻力。此外,详细研究了振动频率,套管直径和土层特性对土塞的影响,并提出了改进的公式来描述振动驱动套管内部的土塞阻力。

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