Maximum shear modulus and modulus degradation curves of an unsaturated tropical soil

被引:0
作者
Fernandes, Jeferson Brito [1 ]
Rocha, Breno Padovezi [2 ]
Giacheti, Heraldo Luiz [1 ]
机构
[1] Univ Estadual Paulista, Dept Engn Civil & Ambiental, Fac Engn, Bauru, SP, Brazil
[2] Inst Fed Educ Ciencia Tecnol Sao Paulo, Campus Avancado Ilha Solteira, Ilha Solteira, SP, Brazil
来源
SOILS AND ROCKS | 2023年 / 46卷 / 02期
基金
巴西圣保罗研究基金会;
关键词
Maximum shear modulus; Modulus degradation; Triaxial test; Bender elements; SDMT; Soil suction; CONE PENETRATION TEST; STIFFNESS; BEHAVIOR;
D O I
10.28927/SR.2023.013122
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
The maximum shear modulus (G(0)) and the modulus degradation curve (G/G(0) versus.) are important information in the evaluation of the soil mechanical behavior, both for dynamic and static loads. Dynamic tests (resonant column and cyclic triaxial tests) are not routinely performed in geotechnical practice in Brazil, and the geotechnical literature on the dynamic behavior of unsaturated tropical soils is limited. This paper presents and discusses seismic dilatometer (SDMT), resonant column, and triaxial test with bender elements and internal instrumentation to determine G(0) and the modulus degradation curve in an unsaturated tropical sandy soil profile. It was observed that G(0) tends to increase non-linearly with soil suction and net stress (sigma - u(a)). It was also observed that the in situ G(0) values determined with the SDMT were higher than those from laboratory tests (bender elements and resonant column). The modulus degradation curves determined with resonant column were used to define the reference curve via SDMT for the studied site. Soil suction influence in shear modulus degradation curves determined with unsaturated triaxial compression tests with local instrumentation is also presented and discussed.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Impact of hydraulic hysteresis on the small strain shear modulus of unsaturated sand
    Khosravi, Ali
    Shahbazan, Parisa
    Pak, Ali
    SOILS AND FOUNDATIONS, 2018, 58 (02) : 344 - 354
  • [32] Use of the dilatometer test to estimate the maximum shear modulus of normally consolidated Busan clay
    Choo, Hyunwook
    Hong, Sung-Jin
    Lee, Woojin
    Lee, Changho
    MARINE GEORESOURCES & GEOTECHNOLOGY, 2019, 37 (05) : 547 - 557
  • [33] Factors affecting shear modulus degradation of cement treated clay
    Subramaniam, P.
    Banerjee, Subhadeep
    SOIL DYNAMICS AND EARTHQUAKE ENGINEERING, 2014, 65 : 181 - 188
  • [34] Degradation properties and prediction model of maximum shear modulus of saturated coral sand under cyclic triaxial loading
    Liang Ke
    Chen Guo-xing
    Liu Kang
    Wang Yan-zhen
    ROCK AND SOIL MECHANICS, 2020, 41 (02) : 601 - 611
  • [35] Model for predicting resilient modulus of unsaturated subgrade soil using soil-water characteristic curve
    Han, Zhong
    Vanapalli, Sai K.
    CANADIAN GEOTECHNICAL JOURNAL, 2015, 52 (10) : 1605 - 1619
  • [36] Unified Model for Small-Strain Shear Modulus of Variably Saturated Soil
    Dong, Yi
    Lu, Ning
    McCartney, John S.
    JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERING, 2016, 142 (09)
  • [37] Evaluation Method of Maximum Shear Modulus of Cohesionless Soil Based on State Parameters from Piezocone Penteration Test
    Duan W.
    Cai G.
    Liu S.
    Xinan Jiaotong Daxue Xuebao/Journal of Southwest Jiaotong University, 2019, 54 (04): : 801 - 807
  • [38] Normalized shear modulus reduction and damping ratio curves of quartz sand and rhyolitic crushed rock
    Senetakis, Kostas
    Anastasiadis, Anastasios
    Pitilakis, Kyriazis
    SOILS AND FOUNDATIONS, 2013, 53 (06) : 879 - 893
  • [39] Prediction of the resilient modulus of two tropical subgrade soils considering unsaturated conditions
    de Freitas, Jeferson Barbosa
    de Rezende, Lilian Ribeiro
    Gitirana Jr, Gilson de F. N.
    ENGINEERING GEOLOGY, 2020, 270 (270)
  • [40] Prediction of maximum shear modulus (Gmax) of granular soil using empirical, neural network and adaptive neuro fuzzy inference system models
    Hajian, Alireza
    Bayat, Meysam
    GEOMECHANICS AND ENGINEERING, 2022, 31 (03) : 291 - 304