刚性芯夯实水泥土桩复合地基非线性数值分析

NON-LINEAR NUMERICAL SIMULATION ON THE COMPOSITE FOUNDATION OF RAMMED SOIL-CEMENT PILES WITH RIGID CORE

  • 摘要: 基于优化桩型的观点,将夯实水泥土桩和灌注桩组合成现浇刚性芯复合桩,充分发挥了夯实水泥土桩、灌注桩的优点,弥补了水泥土桩、灌注桩的缺点。根据弹塑性力学的增量理论,对混凝土、夯实水泥土和土采用Druker-Prager屈服准则,建立现浇刚性芯复合桩复合地基的计算模型,基于IFEPG有限元自动生成系统,编制了有限元程序。通过工程实例,对刚性芯复合桩复合地基的位移场、应力场和破坏机理进行了分析。

     

    Abstract: Based on the idea of optimization design of pile, the composite pile with cast-in-place core is formed with soil-cement pile and cast-in-place pile, which utilizes the virtue of cast-in-place pile and rammed soil-cement pile, and avoids the disadvantage of cast-in-place pile and soil-cement pile. Based on increment theory of elastic-plastic mechanics, a mathematical model for composite foundation with cast-in-place core is established by using Druker-Prager yield criterion for concrete, soil-cement and soil. The finite element program is created by the IFEPG. Through an engineering example, the displacement field,stress field and failure mechanism of composite foundation with cast-in-place core are analyzed.

     

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