Evolution, Monitoring and Predicting Models of Rockburst - Info and Reading Options
Precursor Information for Rock Failure
By Chunlai Wang

"Evolution, Monitoring and Predicting Models of Rockburst" was published by Springer in Feb 12, 2018 - Singapore and it has 207 pages.
“Evolution, Monitoring and Predicting Models of Rockburst” Metadata:
- Title: ➤ Evolution, Monitoring and Predicting Models of Rockburst
- Author: Chunlai Wang
- Number of Pages: 207
- Publisher: Springer
- Publish Date: Feb 12, 2018
- Publish Location: Singapore
“Evolution, Monitoring and Predicting Models of Rockburst” Subjects and Themes:
- Subjects: ➤ Engineering: general - Laws of Specific jurisdictions - Neurosciences - Mine accidents - Mental illness, genetic aspects - Genetic engineering - Rock mechanics
Edition Specifications:
- Format: hardcover
Edition Identifiers:
- The Open Library ID: OL28220373M - OL20511003W
- ISBN-13: 9789811075476 - 9789811075483
- ISBN-10: 9811075476
- All ISBNs: 9811075476 - 9789811075476 - 9789811075483
AI-generated Review of “Evolution, Monitoring and Predicting Models of Rockburst”:
"Evolution, Monitoring and Predicting Models of Rockburst" Description:
Open Data:
Intro -- Preface -- Acknowledgements -- About the Author -- Contents -- 1 Introduction -- 1.1 The Overview of Rockburst -- 1.2 Current Status on Rockburst Induced Conditions -- 1.3 Current Status on the Precursor Characteristics of Rockbursts -- 1.4 Current Status on the Evolution of Rockburst -- 1.5 Current Status on Predicting of Rockburst -- 1.5.1 Study on the Synergetic Monitoring of Rockburst -- 1.5.2 Study on the Predicting Model of Rockburst -- 1.5.3 Study on the Field Predicting of Rockburst Hazard -- References -- 2 Experimental Materials and Equipments -- 2.1 Experimental Materials -- 2.2 Experimental Equipments -- 2.2.1 Laboratory Equipments -- 2.2.2 Field Equipment -- 2.3 SEM and EDS -- Reference -- 3 Mechanism and Predicting Theory-Based of Rockburst Evolution -- 3.1 Introduction -- 3.2 Mechanism of Rockburst -- 3.3 Mechanism of Rockburst Stress-Energy Evolution -- 3.4 Nonlinear Dynamic Theory of Predicting Rockburst -- 3.4.1 Mutation Theory -- 3.4.2 Damage Theory -- 3.4.3 Load/Unload Response Ratio Theory -- 3.4.4 Entropy Theory -- 3.4.5 Fuzzy Matter Element Theory -- 3.4.6 Bayesian Theory and Network Model -- References -- 4 Three-Dimensional Reconstruction Model and Numerical Simulation of Rock Fissures -- 4.1 Introduction -- 4.2 CT Scanning Experiment Under Uniaxial Cyclic Load/Unload -- 4.3 Cracks Extraction and Calculation -- 4.3.1 Processing the CT Images -- 4.3.1.1 Characteristics of CT Images Information -- 4.3.1.2 CT Image Processing Contents and Methods -- 4.3.2 Calculating the Length and Area of Cracks -- 4.3.2.1 Calculating the Length of Cracks -- 4.3.2.2 Calculating the Area of Cracks -- 4.4 Three-Dimensional Reconstruction Model and Numerical Simulation -- 4.4.1 Establishing a Three-Dimensional Finite Element Model -- 4.4.1.1 Establishing the Model of Fissured Rock
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