Rock Fracture: Theories, Modeling Methods, and Engineering Applications provides an in-depth exploration of the fundamental principles and advanced techniques used to understand and predict rock fracture behavior. The book begins with the theoretical framework of fracture mechanics, examining how factors like T-stress influence brittle rock failure under various loading conditions, including compression and tension. It then discusses various modeling approaches for crack propagation, such as fracture mechanics criteria, localized stress models, and their applications to different rock specimens and fault configurations. The text covers hydraulic fracturing theories, including numerical models for fracture initiation and propagation around boreholes, as well as the effects of end friction and jointed rock mass failure. Additionally, it investigates the progressive failure of rock slopes, emphasizing the importance of numerical simulations to anticipate failure modes like toppling and shear failure. This comprehensive treatment underscores the importance of combining theoretical understanding with modeling techniques to optimize engineering practices. Ultimately, this book offers valuable insights for researchers and engineers committed to safer and more efficient rock engineering solutions.
Format:Paperback
Language:English
ISBN:0443512345
ISBN13:9780443512346
Release Date:July 2026
Publisher:Elsevier
Length:396 Pages
Weight:0.99 lbs.
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Format: Paperback
Condition: New
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