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"The subject of rock engineering design, supported by the discipline of rock mechanics, relates to construction on and in rock masses of projects such as slopes, dams, hydroelectric schemes, mines and repositories for radioactive waste disposal"--
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"The subject of rock engineering design, supported by the discipline of rock mechanics, relates to construction on and in rock masses of projects such as slopes, dams, hydroelectric schemes, mines and repositories for radioactive waste disposal"--
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Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: CRC Press
- Seitenzahl: 468
- Erscheinungstermin: 27. Juli 2011
- Englisch
- Abmessung: 284mm x 180mm x 30mm
- Gewicht: 959g
- ISBN-13: 9780415603560
- ISBN-10: 0415603560
- Artikelnr.: 31300593
- Verlag: CRC Press
- Seitenzahl: 468
- Erscheinungstermin: 27. Juli 2011
- Englisch
- Abmessung: 284mm x 180mm x 30mm
- Gewicht: 959g
- ISBN-13: 9780415603560
- ISBN-10: 0415603560
- Artikelnr.: 31300593
Professor Xia-Ting Feng obtained his PhD in Civil Engineering at the Northeastern University, China, where he continued as a Professor. He was admitted by the Hundred Talents Program to the Chinese Academy of Sciences (CAS) in 1998 and later permanently joined CAS's Institute of Rock and Soil Mechanics. He later obtained the support of the China National Funds for Distinguished Young Scientists and became a Chair Professor of the Cheung Kong Scholars' Programme of the Chinese Ministry of Education. Dr Feng is the President of the International Society for Rock Mechanics for the period 2011-2015. He has made original contributions to the subject of 'intelligent rock mechanics' and his methods have been applied to large rock engineering projects in China and other countries. Professor John A. Hudson graduated in 1965 from the Heriot-Watt University, UK, and obtained his PhD at the University of Minnesota, USA. He has spent his professional career in engineering rock mechanics-as it applies to civil, mining and environmental engineering-in consulting, research, teaching and publishing and was awarded the DSc. degree for his contributions to the subject. In addition to authoring many scientific papers and books, he edited the 1993 five-volume Comprehensive Rock Engineering compendium, and the International Journal of Rock Mechanics and Mining Sciences from 1983-2006. Since 1983, he has been affiliated with Imperial College, London as a Reader, Professor, and now Emeritus Professor and was elected as a Fellow of the UK Royal Academy of Engineering in 1998. Prof. Hudson was the President of the International Society for Rock Mechanics between 2007 and 2011. He is also an Honorary Professor at the University of Hong Kong and an Adjunct Professor in the Chinese Academy of Sciences.
1. Introduction 2. The ways ahead for rock engineering design methodologies
3. Flowcharts for rock engineering modelling and design 4. Specifying the
information required for rock mechanics modelling and rock engineering
design 5. Technical auditing of rock mechanics modelling and rock
engineering design 6. Case example of the design and construction of a rock
slope 7. Case example of the design and construction of a large underground
hydroelectric powerhouse in a deep valley region 8. Protocol Sheets 9.
Illustrative example of the Protocol Sheets use 10. Concluding Remarks.
Appendix A. List of all the ISRM suggested methods (in chronological order)
Appendix B. The Chinese 'Basic Quality' (BQ) System for rock mass
classification.
3. Flowcharts for rock engineering modelling and design 4. Specifying the
information required for rock mechanics modelling and rock engineering
design 5. Technical auditing of rock mechanics modelling and rock
engineering design 6. Case example of the design and construction of a rock
slope 7. Case example of the design and construction of a large underground
hydroelectric powerhouse in a deep valley region 8. Protocol Sheets 9.
Illustrative example of the Protocol Sheets use 10. Concluding Remarks.
Appendix A. List of all the ISRM suggested methods (in chronological order)
Appendix B. The Chinese 'Basic Quality' (BQ) System for rock mass
classification.
1. Introduction 2. The ways ahead for rock engineering design methodologies
3. Flowcharts for rock engineering modelling and design 4. Specifying the
information required for rock mechanics modelling and rock engineering
design 5. Technical auditing of rock mechanics modelling and rock
engineering design 6. Case example of the design and construction of a rock
slope 7. Case example of the design and construction of a large underground
hydroelectric powerhouse in a deep valley region 8. Protocol Sheets 9.
Illustrative example of the Protocol Sheets use 10. Concluding Remarks.
Appendix A. List of all the ISRM suggested methods (in chronological order)
Appendix B. The Chinese 'Basic Quality' (BQ) System for rock mass
classification.
3. Flowcharts for rock engineering modelling and design 4. Specifying the
information required for rock mechanics modelling and rock engineering
design 5. Technical auditing of rock mechanics modelling and rock
engineering design 6. Case example of the design and construction of a rock
slope 7. Case example of the design and construction of a large underground
hydroelectric powerhouse in a deep valley region 8. Protocol Sheets 9.
Illustrative example of the Protocol Sheets use 10. Concluding Remarks.
Appendix A. List of all the ISRM suggested methods (in chronological order)
Appendix B. The Chinese 'Basic Quality' (BQ) System for rock mass
classification.