Structural geology as a partition of geological science aiming at describing the structures–joints, faults, folds at various scales. The anisotropy and inhomogeneity that can occur in natural rock masses. Open fault breccias facilitate the movement.
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Structural geology (a partition of geology aiming at describing the structures-joints, faults, folds, etc. - at various scales) can be used in the field of rock mechanics and rock engineering, and particularly in underground engineering works (tunneling and rock caverns) together more reliable data for empirical stability analyses and deterministic calculation models. Methods of structural geology are introduced, and their applications in rock mechanics/rock engineering are considered a priority in particular through the observation of faults and joints arrest. Structural geology permits a better understanding of the origin, the chronology and the mechanical conduct of discontinuities, and furthermore a more accurate rock mass characterization and rock mass classification, as well as a validation of the actual stress regime. Illustrations chose from different places of using structural models are also given with emphasize on the obligatoriness and the way to build a model at each stage of an underground draft
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