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- W3149257891 abstract "This chapter presents the principles of strain localization analysis applied to geomaterials. It gives the conditions for the formation of different types of deformation bands. The chapter also presents the extension of the analysis to fluid-saturated porous media. The strain localization analysis consists of searching the incipient of a shear band in a solid as a mathematical bifurcation condition for the deformation field. The localization criterion depends on the constitutive relation. The Drucker–Prager plasticity model with non-associate flow rule is commonly used for porous rocks. In classical flow theory of plasticity, the direction of the plastic deformation is fixed with respect to the normal to the plastic potential. The chapter proposes the examples of non-coaxial constitutive models in the form of a deformation theory of plasticity. At high confinement, suppressed dilatancy may lead to grain crushing/cataclasis inside the shear band, which leads to substantial porosity and permeability reduction." @default.
- W3149257891 created "2021-04-13" @default.
- W3149257891 creator A5049815647 @default.
- W3149257891 date "2021-03-26" @default.
- W3149257891 modified "2023-10-12" @default.
- W3149257891 title "Material Instability and Strain Localization Analysis" @default.
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- W3149257891 doi "https://doi.org/10.1002/9781119755203.ch3" @default.
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