Mine seismology : seismic response to the caving process: a case study from Four Mines /: seismic response to the caving process: a case study from Four Mines. ([2019])
- Record Type:
- Book
- Title:
- Mine seismology : seismic response to the caving process: a case study from Four Mines /: seismic response to the caving process: a case study from Four Mines. ([2019])
- Main Title:
- Mine seismology : seismic response to the caving process: a case study from Four Mines
- Further Information:
- Note: S.N. Glazer.
- Authors:
- Glazer, S. N
- Contents:
- Chapter 1 IntroductionReferencesChapter 2 Seismic data assessment 2.1 Introduction 2.2 Magnitude definition for the book 2.3 Summary of the seismic data bases 2.4 Test of seismic data base quality 2.4.1 Example based on DOZ seismic data base 2.4.2 Example based on DR Sector, El Teniente 2.5 Radiated seismic energy 2.5.1 Analysis of the Northparkes Mine seismic energy release pattern 2.5.2 Average energy release rates of small size events 2.5.3 Energy release ranges for different magnitude sizes – comparison between mines 2.5.3.1 Low magnitude range 2.5.3.2 Higher magnitude range 2.5.3.3 Energy release ranges for all magnitude sizes 2.6 Comparison of Seismicity Induces by Cave Mining at Palabora Mining (South Africa) and at PT Freeport Indonesia Copper Mines (Glazer and Townsend 2006) 2.6.1 Introduction 2.6.2 The PMC Mine 2.6 3. The Deep Ore Zone Mine of PT Freeport Indonesia 2.6.4 Seismic monitoring systems and their applications to cave operations 2.6.5. Comparison of seismicity 2.6.6 Comparisons of seismic activity rates above and below the mine footprints 2.6.7 ConclusionsAcknowledgements 2.6.8 Eleven years later 2.7 ConclusionsReferencesChapter 3 Seismic signature of the caving process 3.1 Introduction 3.2 PT Freeport Indonesia DOZ Mine 3.2.1 Analysis of the whole DOZ seismic data base 3.2.2 Analysis of seismicity recorded inside of the DOZ footprint 3.2.3 Comparison of seismicity recorded above the DOZ footprint withseismicity recorded in the whole mine 3.3 DiabloChapter 1 IntroductionReferencesChapter 2 Seismic data assessment 2.1 Introduction 2.2 Magnitude definition for the book 2.3 Summary of the seismic data bases 2.4 Test of seismic data base quality 2.4.1 Example based on DOZ seismic data base 2.4.2 Example based on DR Sector, El Teniente 2.5 Radiated seismic energy 2.5.1 Analysis of the Northparkes Mine seismic energy release pattern 2.5.2 Average energy release rates of small size events 2.5.3 Energy release ranges for different magnitude sizes – comparison between mines 2.5.3.1 Low magnitude range 2.5.3.2 Higher magnitude range 2.5.3.3 Energy release ranges for all magnitude sizes 2.6 Comparison of Seismicity Induces by Cave Mining at Palabora Mining (South Africa) and at PT Freeport Indonesia Copper Mines (Glazer and Townsend 2006) 2.6.1 Introduction 2.6.2 The PMC Mine 2.6 3. The Deep Ore Zone Mine of PT Freeport Indonesia 2.6.4 Seismic monitoring systems and their applications to cave operations 2.6.5. Comparison of seismicity 2.6.6 Comparisons of seismic activity rates above and below the mine footprints 2.6.7 ConclusionsAcknowledgements 2.6.8 Eleven years later 2.7 ConclusionsReferencesChapter 3 Seismic signature of the caving process 3.1 Introduction 3.2 PT Freeport Indonesia DOZ Mine 3.2.1 Analysis of the whole DOZ seismic data base 3.2.2 Analysis of seismicity recorded inside of the DOZ footprint 3.2.3 Comparison of seismicity recorded above the DOZ footprint withseismicity recorded in the whole mine 3.3 Diablo Regimento Sector, El Teniente Mine 3.3.1 Analysis of the whole Diablo Regimento seismic data base 3.3.2 Comparison of seismicity recorded above the DR foot print withseismicity recorded in the whole mine 3.4 Northparkes Mine, Lift 2 Mine 3.4.1 Analysis of the whole seismic data base 3.4.2 Analysis of seismicity recorded inside of the cave 3.4.3 Estimation of the cave back position 3.4.4 Comparison of seismicity recorded above the mine foot print with seismicity recorded in the whole mine 3.5 Summary 3.5.1 Initiation of the caving process 3.5.2 Pillar failure 3.5.3 Time period after the pillar failure and before the break through 3.5.4 Break through 3.5.5 Seismicity trends after the break through 3.5.6 Mature stage of the caving process 3.6 ConclusionsReferenceChapter 4 Comparison of seismicity induced while mining hydro-fractured and non-preconditioned rock mass volumes 4.1 Introduction 4.2 Diablo Regimento Sector, seismicity induced in the cave and in the surrounding volumes 4.3 Palabora Mining Company, seismicity induced in the cave and in the surrounding volumes 4.4 Deep Ore Zone Mine, seismicity induced in the cave and in the surrounding volumes 4.5 Comparison between the mines 4.6 Summary of observations 4.7 ConclusionsReferencesChapter 5 Summary and ConclusionsReferencesIndex. … (more)
- Publisher Details:
- Cham, Switzerland : Springer
- Publication Date:
- 2019
- Extent:
- 1 online resource
- Subjects:
- 551.22
Earth sciences
Seismology
Mining engineering
SCIENCE / Earth Sciences / Geography
SCIENCE / Earth Sciences / Geology
Mining engineering
Seismology
Technology & Engineering -- Civil -- General
Science -- Geophysics
Science -- Earth Sciences -- General
Nature -- Natural Disasters
Civil engineering, surveying & building
Geophysics
Economic geology
Natural disasters
Physical geography
Civil engineering
Geology
Electronic books - Languages:
- English
- ISBNs:
- 9783319955735
- Related ISBNs:
- 331995573X
9783319955728 - Notes:
- Note: Includes bibliographical references and index.
Note: Online resource; title from PDF title page (SpringerLink, viewed August 13, 2018). - Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
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- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.367872
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