基于解析与数值迭代耦合计算的h型双排桩承载特性研究

STUDY ON THE BEARING BEHAVIOR OF h-TYPE DOUBLE ROW PILES BASED ON ANALYTICAL AND NUMERICAL ITERATIVE COUPLING CALCULATIONS

  • 摘要: 针对深基坑工程h型双排桩支护结构复杂的力学特性,将其支护体系划分为后排桩独立受力与前后排桩协同受力两个阶段,并基于竖向弹性地基梁理论构建各阶段微分方程,推导位移与内力的全长解析解。为了消除桩间土水平位移差初始假设(Δy≈0)带来的误差,提出了解析–数值迭代耦合优化方法,通过C++编程实现了土压力修正与位移场重解。依托砂土地层基坑工程开展模型试验,并采用MIDAS GTS NX进行有限元模拟,将计算结果与试验值、模拟值进行对比,验证了本文计算模型的可行性。

     

    Abstract: Considering the complex mechanical characteristics of the h-type double-row pile supporting structure in deep foundation pit engineering, the supporting system is divided into two stages: independent force bearing of the rear piles and cooperative force bearing of the front and rear piles. Based on the theory of vertical elastic foundation beams, differential equations for each stage are constructed, and analytical solutions for displacement and internal force are derived for the entire length. To eliminate the error caused by the initial assumption of small horizontal displacement difference between piles (Δy≈0), an analytical-numerical iterative coupling optimization method is proposed. The soil pressure correction and displacement field re-solution are implemented through C++ programming. Model tests are conducted based on sandy soil foundation pit engineering, and finite element simulations are performed using MIDAS GTS NX. The calculation results are compared with experimental and simulated values, verifying the feasibility of the calculation model presented in this paper.

     

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