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A generalized nonlinear three-dimensional Hoek‒Brown failure criterion 被引量:2

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摘要 To understand the strengths of rocks under complex stress states,a generalized nonlinear threedimensional(3D)Hoek‒Brown failure(NGHB)criterion was proposed in this study.This criterion shares the same parameters with the generalized HB(GHB)criterion and inherits the parameter advantages of GHB.Two new parameters,b,and n,were introduced into the NGHB criterion that primarily controls the deviatoric plane shape of the NGHB criterion under triaxial tension and compression,respectively.The NGHB criterion can consider the influence of intermediate principal stress(IPS),where the deviatoric plane shape satisfies the smoothness requirements,while the HB criterion not.This criterion can degenerate into the two modified 3D HB criteria,the Priest criterion under triaxial compression condition and the HB criterion under triaxial compression and tension condition.This criterion was verified using true triaxial test data for different parameters,six types of rocks,and two kinds of in situ rock masses.For comparison,three existing 3D HB criteria were selected for performance comparison research.The result showed that the NGHB criterion gave better prediction performance than other criteria.The prediction errors of the strength of six types of rocks and two kinds of in situ rock masses were in the range of 2.0724%-3.5091%and 1.0144%-3.2321%,respectively.The proposed criterion lays a preliminary theoretical foundation for prediction of engineering rock mass strength under complex in situ stress conditions.
出处 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第8期3149-3164,共16页 岩石力学与岩土工程学报(英文版)
基金 supported by the National Natural Science Foundation of China(Grant Nos.51934003,52334004) Yunnan Major Scientific and Technological Projects(Grant No.202202AG050014)。
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  • 1Adhikary D P, Shen B, Duncan Fama M E. A study of highwaU mining panel stability. International Journal of Rock Mechanics and Mining Sciences, 2002, 39 (5): 643-659.
  • 2Benz T, Schwab R, Kauther R A, Vermeer P A. A Hoek-Brown criterion with intrinsic material strength factorization. International Journal of Rock Mechanics and Mining Sciences, 2008, 45 (2): 210-222.
  • 3Chang C, Haimson B. True triaxial strength and deformability of the German continental deep drilling program (KTB) deep hole amphibolite. Journal of Geophysical Research, 2000, 105 (B8): 1 899-1 913.
  • 4Drucker D, Prager W. Soil mechanics and plastic analysis or limit design. Quarterly of Applied Mathematics, 1952, 10 (2): 157-165.
  • 5Drucker D C. On uniqueness in the theory of plasticity. Quarterly of Applied Mathematics, 1956, 14 (1): 35-42.
  • 6Hoek E, Brown E. Empirical strength criterion for rock masses: Journal of the Geotechnical Engineering Division, ASCE, 1980, 106 (9): 1 013- 1 035.
  • 7Hoek E. Strength of rock and rock masses. ISRM News, 1994, 2 (2): 4--16.
  • 8Jaiswal A, Shrivastva B K. Numerical simulation of coal pillar strength. International Journal of Rock Mechanics and Mining Sciences, 2009a, 46 (4): 779-788.
  • 9Jaiswal A, Shrivastva B K. Proposed hybrid method of partial extraction. Journal of Scientific and Industrial Research, 2009b, 68 (4): 307-311.
  • 10Kim K M, Lade P V. Modeling rock strength in three dimensions. International Journal of Rock Mechanics and Mining Sciences and Geomechanics Abstracts, 1984, 21 (1): 21-33.

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