The effect of particle shape and grain-scale properties of shale: A micromechanics approach

被引:32
|
作者
Ortega, J. A. [1 ]
Ulm, F-J [1 ]
Abousleiman, Y. [2 ]
机构
[1] MIT, Dept Civil & Environm Engn, Cambridge, MA 02139 USA
[2] Univ Oklahoma, Poromech Inst, Norman, OK 73019 USA
关键词
micromechanics; nanogranular; nanoindentation; anisotropy; shale; ELASTIC PROPERTIES; CONTINUUM MICROMECHANICS; COMPOSITE-MATERIALS; INDENTATION; ANISOTROPY; PACKINGS; APPROXIMATIONS; INCLUSIONS; MECHANICS; MODULUS;
D O I
10.1002/nag.850
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
Traditional approaches for modeling the anisotropic elasticity response of the highly heterogeneous clay fabric in shale have mainly resorted to geometric factors such as definitions of particles shapes and orientations. However, predictive models based on these approaches have been mostly validated using macroscopic elasticity data. The recent implementation of instrumented indentation aimed at probing nanoscale mechanical behaviors has provided a new context for characterizing and modeling the anisotropy of the porous clay in shale. Nanoindentation experimental data revealed the significant contribution of the intrinsic anisotropy of the solid clay to the measured elastic response. In this investigation, we evaluate both the effects of geometric factors and of the intrinsic anisotropic elasticity of the solid clay phase on the observed anisotropy of shale at multiple length scales through the development of a comprehensive theoretical micromechanics approach It was found that among various combinations of these sources of anisotropy, the elastic response of the clay fabric represented as a granular ensemble of aligned effective clay particles with spherical morphology and anisotropic elasticity compares satisfactorily to nanoindentation and ultrasonic pulse velocity measurements at nano- and macroscopic length scales, respectively. Other combinations of sources of anisotropy could yield comparable predictions, particularly at macroscopic scales, at the expense of requiring additional experimental data to characterize the morphology and orientations of particles. Copyright (C) 2009 John Wiley & Sons, Ltd.
引用
收藏
页码:1124 / 1156
页数:33
相关论文
共 50 条
  • [31] Grain-scale petrographic evidence for distinguishing detrital and authigenic quartz in shale: How much of a role do they play for reservoir property and mechanical characteristic?
    Zhu, Hongjian
    Ju, Yiwen
    Yang, Manping
    Huang, Cheng
    Feng, Hongye
    Qiao, Peng
    Ma, Chao
    Su, Xin
    Lu, Yanjun
    Shi, Erxiu
    Han, Jinxuan
    ENERGY, 2022, 239
  • [32] Grain-scale investigation of the anisotropy of Portevin-Le Chatelier effect in Mg AZ91 alloy
    Ovri, Henry
    Steglich, Dirk
    Dieringa, Hajo
    Lilleodden, Erica T.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2019, 740 : 226 - 234
  • [33] Grain-scale study of the grain boundary effect on UO2 fuel oxidation and fission gas release under reactor conditions
    Liu, Min
    Kang, Qinjun
    Xu, Hongwu
    CHEMICAL ENGINEERING SCIENCE, 2021, 229 (229)
  • [34] Transgranular fracturing of crystalline rocks and its influence on rock strengths: Insights from a grain-scale continuum–discontinuum approach
    Li, X.F.
    Li, H.B.
    Zhao, J.
    Computer Methods in Applied Mechanics and Engineering, 2021, 373
  • [35] Effect of particle shape on the mechanical properties of particle-filled PVC
    Nakamura, Y
    Okabe, S
    Yoshimoto, N
    Iida, T
    POLYMERS & POLYMER COMPOSITES, 1998, 6 (06): : 407 - 414
  • [36] Quantification of Shape Properties and Their Effects on Particle Packing of Coarse-Grain Soil
    An, Aijun
    Nie, Zhihong
    INDIAN GEOTECHNICAL JOURNAL, 2021, 51 (02) : 405 - 413
  • [37] Quantification of Shape Properties and Their Effects on Particle Packing of Coarse-Grain Soil
    Aijun An
    Zhihong Nie
    Indian Geotechnical Journal, 2021, 51 : 405 - 413
  • [38] Effect of particle shape on packing properties during tapping
    Miyajima, T
    Yamamoto, KI
    Sugimoto, M
    ADVANCED POWDER TECHNOLOGY, 2001, 12 (01) : 117 - 134
  • [39] THE EFFECT OF GRAIN SHAPE ON THE TENSILE PROPERTIES OF ALPHA-URANIUM
    TAPLIN, DMR
    MARTIN, JW
    JOURNAL OF NUCLEAR MATERIALS, 1963, 10 (02) : 134 - 139
  • [40] Effect of the Shape of the Abrasive Grain on Its Mechanical Properties.
    Wozniak, Kazimierz
    1600, (49):