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Failure mechanism and stability anal...
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SpringerLink (Online service)
Failure mechanism and stability analysis of rock slopenew insight and methods /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Failure mechanism and stability analysis of rock slopeby Ke Zhang.
Reminder of title:
new insight and methods /
Author:
Zhang, Ke.
Published:
Singapore :Springer Singapore :2020.
Description:
xxvi, 248 p. :ill., digital ;24 cm.
Contained By:
Springer Nature eBook
Subject:
Rock slopesStability.
Online resource:
https://doi.org/10.1007/978-981-15-5743-9
ISBN:
9789811557439$q(electronic bk.)
Failure mechanism and stability analysis of rock slopenew insight and methods /
Zhang, Ke.
Failure mechanism and stability analysis of rock slope
new insight and methods /[electronic resource] :by Ke Zhang. - Singapore :Springer Singapore :2020. - xxvi, 248 p. :ill., digital ;24 cm.
Introduction -- Part I Experimental Studies on Compression-Shear Failure Mechanism of Rock Mass -- Joint Surface Morphology and Shear Behavior -- Influence of Flaw Inclination on Shear Fracturing and Fractal Behavior -- Influence of Flaw Density on Shear Fracturing and Fractal Behavior -- Part II Failure Mechanism and Stability Analysis of Heavily Fractured Rock Slope -- Method for Determining Strength Parameters of Heavily Fractured Rock Mass -- Kinematical Element Method -- Integrated Karst Cave Stochastic Model-Limit Equilibrium Method -- Strain-Softening Behavior and Strength Reduction Method -- Three-dimensional Effects -- Part III Failure Mechanism and Stability Analysis of Rock Slope Controlled by Major Geological Discontinuities -- Joint Element and Displacement Discontinuity Method -- Discontinuity Kinematical Element Method -- Joint Element and Strength Reduction Method -- Fracture Mechanics Method.
This book presents in-depth coverage of laboratory experiments, theories, modeling techniques, and practices for the analysis and design of rock slopes in complex geological settings. It addresses new concepts in connection with the kinematical element method, discontinuity kinematical element method, integrated karst cave stochastic model-limit equilibrium method, improved strength reduction method, and fracture mechanics method, taking into account the relevant geological features. The book is chiefly intended as a reference guide for geotechnical engineering and engineering geology professionals, and as a textbook for related graduate courses.
ISBN: 9789811557439$q(electronic bk.)
Standard No.: 10.1007/978-981-15-5743-9doiSubjects--Topical Terms:
884124
Rock slopes
--Stability.
LC Class. No.: TA706 / .Z43 2020
Dewey Class. No.: 624.15132
Failure mechanism and stability analysis of rock slopenew insight and methods /
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Introduction -- Part I Experimental Studies on Compression-Shear Failure Mechanism of Rock Mass -- Joint Surface Morphology and Shear Behavior -- Influence of Flaw Inclination on Shear Fracturing and Fractal Behavior -- Influence of Flaw Density on Shear Fracturing and Fractal Behavior -- Part II Failure Mechanism and Stability Analysis of Heavily Fractured Rock Slope -- Method for Determining Strength Parameters of Heavily Fractured Rock Mass -- Kinematical Element Method -- Integrated Karst Cave Stochastic Model-Limit Equilibrium Method -- Strain-Softening Behavior and Strength Reduction Method -- Three-dimensional Effects -- Part III Failure Mechanism and Stability Analysis of Rock Slope Controlled by Major Geological Discontinuities -- Joint Element and Displacement Discontinuity Method -- Discontinuity Kinematical Element Method -- Joint Element and Strength Reduction Method -- Fracture Mechanics Method.
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This book presents in-depth coverage of laboratory experiments, theories, modeling techniques, and practices for the analysis and design of rock slopes in complex geological settings. It addresses new concepts in connection with the kinematical element method, discontinuity kinematical element method, integrated karst cave stochastic model-limit equilibrium method, improved strength reduction method, and fracture mechanics method, taking into account the relevant geological features. The book is chiefly intended as a reference guide for geotechnical engineering and engineering geology professionals, and as a textbook for related graduate courses.
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EB TA706 .Z63 2020 2020
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