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首页> 外文期刊>Canadian Geotechnical Journal >Relationship between installation torque and axial capacities of helical piles in cohesionless soils
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Relationship between installation torque and axial capacities of helical piles in cohesionless soils

机译:无粘性土中安装扭矩与螺旋桩轴向承载力的关系

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摘要

With the rapid growth of the helical piling industry for oil and gas projects and transmission lines, reliable installation torque estimates and measurements become crucial. This paper presents a theoretical model developed to estimate the torsional resistance of cohesionless soils to helical pile installation. The theoretical torque model was verified using installation records collected from different sites. The paper also highlights factors that affect helical pile installation, including soil properties, fluctuation in groundwater levels, shape of pile shaft, pile geometry, and method of helical pile installation. The proposed torsional resistance model was then used to establish the traditional torque factors to proportionally correlate the axial capacity of helical pile and the installation torque. The results of the study indicated that the torque factor is a function of the load path (i.e., tension or compression). Therefore, torque factors in compression and tension, K-c and K-t, respectively, were formulated and presented in the paper.
机译:随着油气项目和输电线路螺旋桩行业的快速发展,可靠的安装扭矩估算和测量变得至关重要。本文提出了一种理论模型,用于估算无粘性土对螺旋桩安装的抗扭强度。使用从不同地点收集的安装记录验证了理论扭矩模型。本文还重点介绍了影响螺旋桩安装的因素,包括土壤特性,地下水位的波动,桩身的形状,桩的几何形状以及螺旋桩的安装方法。然后,使用所提出的抗扭模型来建立传统的扭矩因子,以使螺旋桩的轴向承载力与安装扭矩成比例关系。研究结果表明,扭矩因数是负载路径(即张力或压缩力)的函数。因此,本文分别提出并提出了压缩和拉伸扭矩因子K-c和K-t。

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