首页> 外文期刊>International journal of geomechanics >Numerical and Experimental Investigations of Granular Anchor Piles in Loose Sandy Soil Subjected to Uplift Loading
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Numerical and Experimental Investigations of Granular Anchor Piles in Loose Sandy Soil Subjected to Uplift Loading

机译:砂土在竖向荷载作用下的粒锚桩数值与试验研究。

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摘要

The granular anchor pile (GAP) system is one of the relatively new innovative ground-improvement techniques used to sustain the tensile loads. This paper presents the behavior of a GAP system in a loose sandy soil. The small-scale laboratory tests were conducted on a loose dry sand to investigate the effect of embedded length of pile on the uplift capacity of the GAP system. The results were compared with the numerical analysis using a three-dimesional finite-element analysis software. In the detailed numerical study, the effects of key parameters, such as length (L) and diameter (D) of pile and the elastic modulus of surrounding soil, on the uplift capacity of the GAP were examined. The load-displacement response of the GAP was also analyzed and is reported in this paper. For a constant diameter of the GAP, its ultimate uplift capacity increases as the L/D ratio increases. However, for L/D ratios greater than 10, further increase in the L/D ratio does not contribute to the load sharing significantly. The bulging failure predominantly occurs in the GAP with a higher modulus ratio, whereas the shaft failure occurs with the lower modulus ratios.
机译:颗粒锚桩(GAP)系统是用于承受拉伸载荷的较新的创新地面改良技术之一。本文介绍了在松散的沙土中GAP系统的行为。在松散的干沙上进行了小规模的实验室测试,以研究桩的嵌入长度对GAP系统提升能力的影响。将结果与使用三维有限元分析软件的数值分析进行比较。在详细的数值研究中,研究了关键参数(例如桩的长度(L)和直径(D)以及周围土壤的弹性模量)对GAP的抗拔能力的影响。还分析了GAP的荷载-位移响应,并在本文中进行了报道。对于恒定直径的GAP,其最终升力随L / D比的增加而增加。但是,对于L / D比率大于10的情况,L / D比率的进一步增加不会显着有助于负载共享。鼓胀故障主要发生在高模量比的GAP中,而轴故障发生在较低的模量比。

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