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Effects of fabric anisotropy on elastic shear modulus of granular soils 被引量:2

Effects of fabric anisotropy on elastic shear modulus of granular soils
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摘要 The fabric anisotropy of a granular soil deposit can strongly infl uence its engineering properties and behavior. This paper presents the results of a novel experimental study designed to examine the effects of fabric anisotropy on smallstrain stiffness and its evolution with loading on the elastic shear modulus of granular materials under a K0 condition. Two primary categories of fabric anisotropy, i.e., deposition-induced and particle shape-induced, are investigated. Toyoura sand deposits with relative densities of 40% and 80% were prepared using deposition angles oriented at 0o and 90o. Piezoelectric transducers were used to obtain the elastic shear modulus in the vertical and horizontal directions(Gvh and Ghh). The measurements indicate distinct differences in the values of G with respect to the different deposition angles. Particle shapeinduced fabric anisotropy was examined using four selected sands. It was concluded that sphericity is a controlling factor dominating the small-strain stiffness of granular materials. The degree of fabric anisotropy proves to be a good indicatorin the characterization of stress-induced fabric evolution during loading and unloading stress cycles. The experimental data were used to calibrate an existing micromechanical model, which was able to represent the behavior of the granular material and the degree of fabric anisotropy reasonably well. The fabric anisotropy of a granular soil deposit can strongly infl uence its engineering properties and behavior. This paper presents the results of a novel experimental study designed to examine the effects of fabric anisotropy on smallstrain stiffness and its evolution with loading on the elastic shear modulus of granular materials under a K0 condition. Two primary categories of fabric anisotropy, i.e., deposition-induced and particle shape-induced, are investigated. Toyoura sand deposits with relative densities of 40% and 80% were prepared using deposition angles oriented at 0o and 90o. Piezoelectric transducers were used to obtain the elastic shear modulus in the vertical and horizontal directions(Gvh and Ghh). The measurements indicate distinct differences in the values of G with respect to the different deposition angles. Particle shapeinduced fabric anisotropy was examined using four selected sands. It was concluded that sphericity is a controlling factor dominating the small-strain stiffness of granular materials. The degree of fabric anisotropy proves to be a good indicatorin the characterization of stress-induced fabric evolution during loading and unloading stress cycles. The experimental data were used to calibrate an existing micromechanical model, which was able to represent the behavior of the granular material and the degree of fabric anisotropy reasonably well.
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第2期269-278,共10页 地震工程与工程振动(英文刊)
基金 National Science Foundation of China under Grant No.41202186 the Zhejiang National Science Foundation under Grant No.LQ12E08007
关键词 fabric anisotropy shape indicator shear wave velocity shear modulus fabric anisotropy shape indicator shear wave velocity shear modulus
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参考文献2

  • 1C.-J. Lee,H.Y. Huang.Wave velocities and their relation to fabric evolution during the shearing of sands[J].Soil Dynamics and Earthquake Engineering.2006(1)
  • 2X. Zeng,B. Ni.Stress-Induced Anisotropic Gma x of Sands and Its Measurement[J].Journal of Geotechnical and Geoenvironmental Engineering.1999(9)

同被引文献26

  • 1YAO Yangping,LU Dechun,ZHOU Annan,ZOU Bo.Generalized non-linear strength theory and transformed stress space[J].Science China(Technological Sciences),2004,47(6):691-709. 被引量:62
  • 2张立,刘争平,熊自英.利用地脉动H/V谱比反演地层V_s结构剖面[J].工程地球物理学报,2009,6(S1):4-5. 被引量:13
  • 3Ahmed Elgamal,Zhaohui Yang,Ender Parra,Ahmed Ragheb.Modeling of cyclic mobility in saturated cohesionless soils[J]. International Journal of Plasticity . 2002 (6)
  • 4MahdiTaiebat,Yannis F.Dafalias.SANISAND: Simple anisotropic sand plasticity model[J]. Int. J. Numer. Anal. Meth. Geomech. . 2008 (8)
  • 5Yannis F.Dafalias,Majid T.Manzari,Achilleas G.Papadimitriou.SANICLAY: simple anisotropic clay plasticity model[J]. Int. J. Numer. Anal. Meth. Geomech. . 2006 (12)
  • 6Yannis F. Dafalias,Majid T. Manzari.Simple Plasticity Sand Model Accounting for Fabric Change Effects[J]. Journal of Engineering Mechanics . 2004 (6)
  • 7Y.P.Yao,D.A.Sun,T.Luo.A critical state model for sands dependent on stress and density[J]. Int. J. Numer. Anal. Meth. Geomech. . 2004 (4)
  • 8S. K. Jain,Yang-Ping Yao,De’An Sun.Application of Lade’s Criterion to Cam-Clay Model[J]. Journal of Engineering Mechanics . 2001 (6)
  • 9Yang-Ping Yao,De’An Sun.Application of Lade’s Criterion to Cam-Clay Model[J]. Journal of Engineering Mechanics . 2000 (1)
  • 10Tatsuoka, Fumio,Toki, Shosuke,Miura, Seiichi,Kato, Hiroyuki,Okamoto, Masahiro,Yamada, Shin-Ichi,Yasuda, Susumu,Tanizawa, Fusao.SOME FACTORS AFECTING CYCLIC UNDRAINED TRIAXIAL STRENGTH OF SAND. Soils and Foundations . 1986

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