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A Simplified Calculation Method for Stress Concentration Ratio of Composite Foundation with Rigid Piles

机译:刚性桩复合地基应力集中比的简化计算方法

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Piles in a composite foundation share loads with the surrounding soil instead of carrying all loads alone as a pile foundation. Stress concentration ratio, defined as the ratio of the stress on the top of piles to the stress on the surrounding soil, is essential for the design of piles in the composite foundation. An equal strain condition is widely accepted and adopted in the existing methods of calculating the stress concentration ratio. In other words, the piles should have identical relative displacement with the surrounding soil in an equal strain condition. This assumption may work for flexible and semi-rigid piles; however, it may not be suitable for rigid piles considering the significant stiffness difference of pile and soil. The relative displacement of rigid piles and surrounding soil can significantly change the stress distribution on piles and soils due to the pile-soil interaction (i.e., pile side friction). Therefore, the pile-soil interaction should be considered in the design of the rigid piles in the composite foundation. In this study, a simplified theoretical solution of the stress concentration ratio was derived based on the deformation coordination between rigid pile and soil to consider the pile-soil relative displacement and thus the pile-soil interaction. The pile side friction was assumed as linearly increased with the pile-soil relative displacement and then the stress concentration ratio was derived based on the force and deformation equilibrium in the composite foundation. A neutral point (i.e., location with zero pile-soil relative displacement) was included in the derivation to take the negative skin friction along the pile into account. Lab-scale and full-scale field tests were conducted to verify the effectiveness of the proposed method. Comparison of measured stress concentration ratios with calculated ones using the proposed method demonstrates the effectiveness of the proposed method.
机译:复合地基中的桩与周围的土壤共享荷载,而不是将所有荷载作为桩地单独承担。应力集中比(定义为桩顶应力与周围土壤应力之比)对于复合地基中桩的设计至关重要。在现有的应力集中比计算方法中,均等应变条件已被广泛接受并采用。换句话说,在相同的应变条件下,桩与周围土壤的相对位移应相同。该假设可能适用于柔性和半刚性桩。但是,考虑到桩和土的明显刚度差异,它可能不适用于刚性桩。由于桩-土相互作用(即桩侧摩擦),刚性桩和周围土壤的相对位移会显着改变桩和土上的应力分布。因此,在复合地基中刚性桩的设计中应考虑桩土相互作用。在这项研究中,基于刚性桩与土之间的变形协调,考虑了桩土相对位移以及桩土相互作用,得出了应力集中比的简化理论解。假定桩侧摩擦力随桩土相对位移而线性增加,然后基于复合地基中的力和变形平衡推导出应力集中比。推导中包括一个中性点(即桩土相对位移为零的位置),以考虑沿桩身的负蒙皮摩擦。进行了实验室规模和全面规模的现场测试,以验证所提出方法的有效性。使用所提出的方法对测得的应力集中率与计算得出的应力集中率进行比较,证明了所提出方法的有效性。

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