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Estimation of axial stiffness on existing and reinforcing piles in vertical extension remodeled buildings

机译:垂直延伸改建建筑物中现有桩和钢筋桩的轴向刚度估算

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摘要

In this study, the load distribution ratio (LDR) and axial stiffness of reinforcing piles in vertical extension remodeling structure will be investigated through numerical calculation and case studies. By comparing the results between existing and reinforcing piles, the efficiency of the reinforcing piles will be observed. To further understand the LDR of piles, the effect of elastic modulus of raft, pile end-bearing condition, raft rigidity, and the relative position of reinforcing pile in a group were investigated by using 3D FE analysis. The numerical model was validated based on actual field measurements. In addition, the method in estimating the axial stiffness of reinforcing piles (K-ve) was presented which is based on (1) the axial stiffness of existing piles (K-vr) by using the 3D computer-based method, YSPR (Yonsei Piled Raft), and (2) by reducing the axial stiffness of existing piles by considering the aging and the deterioration process. The results of this can justify the necessity for settlement-based design and improvement of piled-raft foundation of vertical extension remodeling. The conclusions in this paper will significantly contribute to ensuring the safety and integrity of the structure during vertical extension remodeling process and throughout the service period.
机译:在这项研究中,将通过数值计算和案例研究来研究竖向改型结构中钢筋桩的载荷分布比(LDR)和轴向刚度。通过比较现有桩和加固桩的结果,可以观察到加固桩的效率。为了进一步了解桩的LDR,使用3D FE分析研究了筏板的弹性模量,桩的端承条件,筏板的刚度以及钢筋桩的相对位置的影响。该数值模型是根据实际现场测量结果验证的。此外,提出了一种基于3D计算机方法YSPR(Yonsei)来估计钢筋桩(K-ve)的轴向刚度的方法,该方法基于(1)现有桩(K-vr)的轴向刚度。 (2)通过考虑老化和劣化过程来降低现有桩的轴向刚度。结果证明,有必要进行基于沉降的设计,并改善竖向延伸重塑的桩筏基础。本文的结论将对确保垂直延伸改建过程中以及整个服务期间的结构安全性和完整性做出重要贡献。

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