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Verification of soil parameters of hardening soil model with small‑strain stiffness for deep excavations in medium dense sand in Ho Chi Minh City, Vietnam

机译:越南胡志明市中致密沙子深源僵硬刚度的硬化土壤模型土壤参数验证

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摘要

Accurate prediction of wall displacements induced by deep excavations is essential to guarantee stability and safety of the excavation as well as to prevent any harm and damage to the adjacent structures. This paper proposes and validates a set of equations for determining soil parameters of hardening soil model with small-strain stiffness (HS-small model) for medium dense sand in Ho Chi Minh City (HCMC), Vietnam. The study was based on back-analysis of diaphragm walls' displacements from three well-documented excavation cases and data from twenty boreholes. Good agreements between finite element analysis (FEA) results and field observations were obtained by assuming the E-50 stiffness value to 2500N (kPa) (N is the SPT value), the small-strain shear modulus, G(0), to 7000 rho N-0.7 (kPa) and the shear strain at which the shear modulus is reduced to 70% of small-strain modulus, gamma(0.7), to 0.0002. The comparisons with field measurements indicated that HS-small model can better predict the diaphragm walls' displacements than hardening soil model (HS model). Additionally, the field displacements of diaphragm walls in medium dense sand are in the range of 0.1-0.3%H (H is excavation depth).
机译:深度挖掘引起的墙壁位移的精确预测对于保证挖掘的稳定性和安全性以及防止对相邻结构的任何危害和损坏是必不可少的。本文提出并验证了一组方程,用于确定Ho Chi Minh City(HCMC)中致密砂中的小应变刚度(HS-Small Model)的硬化土壤模型的土壤参数。该研究基于膜片墙壁的背分析,从三个记录良好的挖掘案例和来自二十个钻孔的数据。通过假设E-50刚度值为2500N(KPA)(N是SPT值),小应变剪切模量,G(0),至7000,通过假设E-50刚度值(0)来实现良好的协议rho n-0.7(KPA)和剪切模量将剪切模量减少到小菌株模量的70%,γ(0.7)至0.0002的剪切菌株。具有现场测量的比较表明HS-Small Model可以更好地预测膜片壁的位移而不是硬化土壤模型(HS模型)。另外,介质致密沙子中隔膜壁的野外位移在0.1-0.3%H(H是挖掘深度)的范围内。

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