Meaning, measurement, and field application of fully softened shear strength of stiff clays and clay shales

被引:0
|
作者
Mesri, Gholamreza [1 ]
Wang, Cai [2 ]
Kane, Thierno [3 ]
机构
[1] Univ Illinois, Champaign, IL 61820 USA
[2] Mott MacDonald, Iselin, NJ USA
[3] Geosyntec Consultants, Great Lakes, IL USA
关键词
fully softened shear strength; stiff clays; clay shales; first-time slope failures; LONG-TERM STABILITY; RESIDUAL STRENGTH; SLOPE FAILURE; LANDSLIDE;
D O I
10.1139/cgj-2020-0663
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
Fully softened shear strength mobilized in first-time slope failures, introduced by Skempton in 1970, corresponds to a random edge-face arrangement and interaction of clay particles in an entirely destructured fabric of stiff clays and clay shales. A series of triaxial compression tests was conducted on reconstituted normally consolidated specimens of 15 stiff clay and clay shale compositions. Based on the laboratory results an empirical correlation for secant fully softened friction angle, [ phi'(fs)]sigma'(s) (n), was developed for clay compositions with plasticity index in the range of 10%-250%, in effective normal stress range of 10-700 kPa. The laboratory measurements confirm an empirical equation for fully softened shear strength in terms of parameters [ phi'(fs)](100) (s) and mfs. The field application of secant fully softened friction angle was examined by stability analyses of 63 first-time slope failures in 38 geologic materials. These include 45 slope failures with a segment of observed slip surface at residual condition and the back-scarp mobilizing fully softened shear strength, and 18 slope failures with entire observed slip surface at fully softened condition. The back-calculated fully softened secant friction angles for first-time slope failures are in good agreement with [ phi'(fs)]sigma'(s) (n) correlation based on laboratory tests.
引用
收藏
页码:952 / 964
页数:13
相关论文
共 50 条
  • [1] Fully Softened Shear Strength: Application, Measurement, and Correlations
    Castellanos, Bernardo A.
    Brandon, Thomas L.
    GEOTECHNICAL ENGINEERING IN THE XXI CENTURY: LESSONS LEARNED AND FUTURE CHALLENGES, 2019, : 81 - 88
  • [2] The Fully Softened Shear Strength of Lake Agassiz Clays
    Contreras, Ivan A.
    Greenwood, Jed D.
    Grosser, Aaron T.
    ENGINEERING, MONITORING, AND MANAGEMENT OF GEOTECHNICAL INFRASTRUCTURE (GEO-CONGRESS 2020 ), 2020, (316): : 186 - 199
  • [3] Fully Softened Shear Strength Measurement and Correlations
    Stark, Timothy D.
    Fernandez, Rodrigo
    GEOTECHNICAL TESTING JOURNAL, 2020, 43 (05): : 1201 - 1215
  • [4] MEANING, MEASUREMENT AND FIELD APPLICATION OF SWELLING PRESSURE OF CLAY SHALES
    MESRI, G
    PAKBAZ, MC
    CEPEDADIAZ, AF
    GEOTECHNIQUE, 1994, 44 (01): : 129 - 145
  • [5] Shear fracture energies of stiff clays and shales
    Jinhyun Choo
    Ammar Sohail
    Fan Fei
    Teng-fong Wong
    Acta Geotechnica, 2021, 16 : 2291 - 2299
  • [6] Shear fracture energies of stiff clays and shales
    Choo, Jinhyun
    Sohail, Ammar
    Fei, Fan
    Wong, Teng-fong
    ACTA GEOTECHNICA, 2021, 16 (07) : 2291 - 2299
  • [7] Recent Developments in Measurement and Use of Fully Softened Shear Strength in the USA
    Castellanos, Bernardo A.
    Brandon, Thomas L.
    ADVANCES IN LABORATORY TESTING AND MODELLING OF SOILS AND SHALES (ATMSS), 2017, : 264 - 272
  • [8] Climate change and landslide hazard in stiff clays and clay shales
    Comegna, Luca
    Rianna, Guido
    Sequino, Gennaro
    Reder, Alfredo
    Picarelli, Luciano
    Urciuoli, Gianfranco
    LANDSLIDES, 2025,
  • [9] Correlations for Fully Softened Shear Strength Parameters
    Castellanos, B. A.
    Brandon, T. L.
    VandenBerge, D. R.
    GEOTECHNICAL TESTING JOURNAL, 2016, 39 (04): : 568 - 581
  • [10] RESIDUAL SHEAR-STRENGTH OF CLAYS AND SHALES
    MESRI, G
    CEPEDADIAZ, AF
    GEOTECHNIQUE, 1986, 36 (02): : 269 - 274