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国际土力学及基础工程协会简介
引用本文:岩土工程学报编辑部. 国际土力学及基础工程协会简介[J]. 岩土工程学报, 1979, 1(1): 109-110. DOI: 10.11779/CJGE202001012
作者姓名:岩土工程学报编辑部
作者单位:岩土工程学报编辑部
基金项目:国家自然科学基金项目(11672320)
摘    要:国际土力学及基础工程协会(ISSMFE)于1936年成立,同年在美国哈佛大学召开了第一届会议,在这之后,除特殊情况外,都是每四年召开一次国际会议。我国于1957年参加国际土力学及基础工程协会,并派茅以升、陈宗基为代表出席在英国召开的第四届国际会议。此后,二十余年中,主要由于台湾问题,一直没有再出席国际土力学及基础工程协会的会议。历届会议的概要见表1。

关 键 词:花岗岩残积土  原位力学特性  自钻旁压  预钻旁压  钻探扰动  卸荷滞时  
收稿时间:2019-03-18

Effects of drilling disturbance and unloading lag on in-situ mechanical characteristics of granite residual soil
AN Ran,LI Cheng-sheng,KONG Ling-wei,GUO Ai-guo. Effects of drilling disturbance and unloading lag on in-situ mechanical characteristics of granite residual soil[J]. Chinese Journal of Geotechnical Engineering, 1979, 1(1): 109-110. DOI: 10.11779/CJGE202001012
Authors:AN Ran  LI Cheng-sheng  KONG Ling-wei  GUO Ai-guo
Affiliation:1. State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, Wuhan 430071, China;2. University of Chinese Academy of Sciences, Beijing 100049, China
Abstract:The granite residual soil is a kind of special structural soil with both engineering and fabric characteristics of clay and coarse grained soil. Its engineering performance is generally susceptible to disturbance damage and excavation unloading, which may lead to engineering disasters. Through the comparison tests of SBPT and PMT in different predrilling unloading lag time in a typical layer of granite residual soil, the response characteristics of in-situ stiffness attenuation characteristics, strength indexes and bearing capacity of granite residual soil are analyzed. The results show that the weakening effect of drilling disturbance on the strength, bearing capacity and stiffness of granite residual soil is obvious, and the weakening degree increases with the increase of stress release time during unloading period. The order of influence degree of drilling disturbance and unloading delay on each parameter is evaluated by disturbance factor R(u): the effect on stiffness parameter Gs is the largest, followed by undrained shear strength Cu and bearing capacity fak. The in-situ G-γ curves of SBPT and PMT tests are obtained by nonlinear stiffness analysis and effectively fitted by the equation proposed by Ken Stokoe. The research results may provide the reference for engineering design and construction in the granite residual soil area.
Keywords:granite residual soil  in-situ mechanical property  SBPT  PMT  drilling disturbance  unloading lag  
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