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The Effect of the Diameter of Bored Piles in Sand on Friction Resistance

机译:钻孔桩直径在砂上对摩擦抗性的影响

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Bored pile friction resistance may be affected by many factors such as the method of construction, pile length and diameter, the soil properties, as well as the depth below ground level. These factors can be represented analytically to study the influence of diameter on the unit skin friction. In this paper, the Egyptian Code of soil mechanics is used to assess the skin friction capacity for either the ordinary pile diameter as well as for larger pile diameters. The later is presented in the code and through the work of some researchers based on the results of investigations adopted for a sufficient number of field tests. The comparative results of these researchers with respect to the Egyptian Code are used to check the adequacy of both methods. Based on the results of this paper, the traditional static formula adopted for piles of diameter less than 60 cm may be continually used for larger piles by correlating the analysed formulae. Accordingly, it is concluded that the corresponding modified angle of internal friction demonstrates a reduction of the shear strength arising from the soil disturbance along the pile shaft. Based on this research the difference between driven piles and bored piles constructed in same soil can be assessed and a better understanding can be evaluated for the effect of different factors on pile skin friction capacity.
机译:无聊的抗摩擦抗性可能受到许多因素的影响,例如施工,桩长和直径,土壤性质的方法,以及地面低于地层的深度。这些因素可以分析地表示,研究直径对单位皮肤摩擦的影响。在本文中,埃及土壤力学码用于评估普通桩直径的皮肤摩擦力以及较大的桩直径。后来在守则中介绍,并通​​过一些研究人员的工作,根据足够数量的现场测试采用的调查结果。这些研究人员关于埃及代码的比较结果用于检查两种方法的充分性。基于本文的结果,通过将分析的公式相关,可以连续地用于堆积小于60cm的直径小于60cm的传统静态公式。因此,得出结论,相应的内部摩擦角度证明了沿着桩轴的土壤干扰引起的剪切强度的降低。基于这项研究,可以评估各种土壤中构建的从动桩和钻孔桩之间的差异,可以评估不同因素对桩皮摩擦力的影响的更好理解。

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