Forensic Geotechnical Engineering
Herausgegeben:Rao, V.V.S.; Sivakumar Babu, G.L.
Forensic Geotechnical Engineering
Herausgegeben:Rao, V.V.S.; Sivakumar Babu, G.L.
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In this edited volume on advances in forensic geotechnical engineering, a number of technical contributions by experts and professionals in this area are included. The work is the outcome of deliberations at various conferences in the area conducted by Prof. G.L. Sivakumar Babu and Dr. V.V.S. Rao as secretary and Chairman of Technical Committee on Forensic Geotechnical Engineering of International Society for Soil Mechanics and Foundation Engineering (ISSMGE). This volume contains papers on topics such as guidelines, evidence/data collection, distress characterization, use of diagnostic tests…mehr
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In this edited volume on advances in forensic geotechnical engineering, a number of technical contributions by experts and professionals in this area are included. The work is the outcome of deliberations at various conferences in the area conducted by Prof. G.L. Sivakumar Babu and Dr. V.V.S. Rao as secretary and Chairman of Technical Committee on Forensic Geotechnical Engineering of International Society for Soil Mechanics and Foundation Engineering (ISSMGE). This volume contains papers on topics such as guidelines, evidence/data collection, distress characterization, use of diagnostic tests (laboratory and field tests), back analysis, failure hypothesis formulation, role of instrumentation and sensor-based technologies, risk analysis, technical shortcomings. This volume will prove useful to researchers and practitioners alike.
Produktdetails
- Produktdetails
- Developments in Geotechnical Engineering
- Verlag: Springer / Springer India / Springer, Berlin
- Artikelnr. des Verlages: 978-81-322-2376-4
- 1st ed. 2016
- Seitenzahl: 568
- Erscheinungstermin: 7. September 2015
- Englisch
- Abmessung: 241mm x 160mm x 36mm
- Gewicht: 1036g
- ISBN-13: 9788132223764
- ISBN-10: 8132223764
- Artikelnr.: 42319665
- Developments in Geotechnical Engineering
- Verlag: Springer / Springer India / Springer, Berlin
- Artikelnr. des Verlages: 978-81-322-2376-4
- 1st ed. 2016
- Seitenzahl: 568
- Erscheinungstermin: 7. September 2015
- Englisch
- Abmessung: 241mm x 160mm x 36mm
- Gewicht: 1036g
- ISBN-13: 9788132223764
- ISBN-10: 8132223764
- Artikelnr.: 42319665
V.V.S. Rao is an internationally acclaimed Geotechnical Consulting Engineer and is the founder of M/S Nagadi Consultants Pvt. Ltd. a leading Geotechnical Consultancy firm in India. His major field of specialization is soil dynamics including machine foundations and earthquake geotechnical engineering. He has been involved in over 20,000 major to medium sized projects. He was an adviser to NTPC and also to UNDP. He has been an active member for over 40 years in the Geotechnical Committees of the Bureau of Indian Standards. During 1966-1971 he headed the Soil Engineering Section of the Indian Institute of Technology Delhi and guided a number of research projects, in addition to conducting postgraduate programs under USAID, and consultancy jobs. During 1993-1997 he was the secretary and during 1997-2001 the Chair of ISSMGE Technical Committee, TC20 on Professional Practice. In 2001 he introduced the subject of Forensic Geotechnical Engineering at Indian Institute of Technology, Kanpur, India. His first paper on the same subject was presented in the International Workshop on Foundation Design Codes held at Kamakura in Japan in April 2002. He became the Chair of TC on Forensic Geotechnical Engineering, TC 40 during 2005 - 2009. This committee was designated as TC 302 in 2009. He continued to chair this TC until 2013. He is a fellow member of a number of professional societies in India. He has been the national President of the Association of Consulting Civil Engineers (India) during 1989-2003. He is the Founder Chairman of IGS Chennai Chapter. As Joint Secretary of Association of Consulting Engineers (India), he has been involved in the initial drafting of the Engineers Bill. Under his leadership a number of International Seminars/Workshops on Forensic Geotechnical Engineering have been organized between 2005-2013. He has chaired and delivered special lectures in more than eight international conferences and workshops. He also has over 40 published papers in international journals and conferences. He has received seven national awards in India, including a special award by M/S Torsteel Research Foundation, and from Association of Consulting Civil Engineers as also from Indian Geotechnical Society for his significant contribution in Geotechnical Engineering. G.L. Sivakumar Babu is well known for his contributions in research, teaching and consultancy. He completed Ph.D. (Geotechnical Engineering) in 1991 from Indian Institute of Science, Bangalore, India, Master's Degree (Soil Mechanics Foundation Engg.) in 1987 from Anna University, Madras and B.Tech. (Civil Engineering) in 1983 from Sri Venkateswara University, Tirupati. His teaching and research activities include courses on geomechanics, soil investigations, risk and reliability applications in Civil Engineering, pavement engineering, geosynthetics, and ground improvement. Dr. Babu is Editor-in-chief, Indian Geotechnical Journal and is Editorial Board Member of 1) American Society of Civil Engineers (ASCE), Journal of Hazardous, Toxic, and Radioactive Waste 2) International Journal of Georisk -Assessment and Management of Risk for Engineered Systems and Geohazards, 3) Ground Improvement, Journal of Institution of Civil Engineers, UK during 2006 to 2013 and 4) International Journal of Systems Assurance Engineering and Management. He is a Life Member of Indian Roads Congress, Fellow of Institution of Engineers India, Fellow of Indian Geotechnical Society, Fellow of Association of Consulting Engineers (ACCE), Member of American Society of Civil Engineers (ASCE), Member of International Geosynthetics Society (IGS). He has written a book on soil reinforcement and geosynthetics, edited six books and proceedings and has over 200 publications in journals and conferences to his credit. He received several awards and honors for his work for his work. He received the best PhD thesis award in geotechnical engineering in India bythe Indian Geotechnical Society in 1992. He is a Humboldt Fellow and a DST Boyscast Fellow and a recipient of several best paper awards for the papers published in ASCE journals and journals and conferences of Indian Geotechnical Society.
A Framework for Forensic Foundation Engineering.- Forensic Geotechnical Engineering Theory and Practice.- Guidelines for Forensic Investigation of Geotechnical Failures.- Caisson Failure Induced by Wave Action.- Forensic Geotechnical Engineering Investigations: Data Collection.- Diagnosis of Geotechnical Failure Causes Using Bayesian Networks.- Back Analyses in Geotechnical Engineering.- Back Analysis of Slope Failures to Design Landslide Stabilizing Piles.- Back Analyses in Forensic Geotechnical Engineering.- Instrumentation and Monitoring for Forensic Geotechnical Engineering.- Analysis of the Causes of Undue Movements of a Retaining Wall used to form a Deep Basement in Sandstone and Consequent Damage to an Adjacent Canal.- Failure Mechanism of Anchored Retaining Wall Due to the Breakage of Anchor Head.- Backwards Problem in Geotechnical Earthquake Engineering.- Failure Analysis of Underground Construction - Lessons Learned from Taiwan.- Failure Analysis of a Highway Dip Slope Slide.- Characterization of Failure at a Large Landslide in Se Queensland by Geological Mapping, Laboratory Testing, Instrumentation and Monitoring.- Post-liquefaction Data Collection and Analyses for Earthquakes in New Zealand.- Forensic Geotechnics - Some Case Studies from Singapore.- Technical Shortcomings Causing Geotechnical Failures: Report of Task Force 10, TC 302.- Effects of Vibration by Demolition to nearby Machine Shop Floor - Wave Measurement for Dynamic Property of Ground.- A Case of Piping in Sand under a Dam and its Back Analysis.- Influence of Vibrations on Installation of Bored Piles.- Aspects regarding Management of Soil Risk.- Forensic Studies for Failure in Construction of an Underground Station of the Kaohsiung MRT System.- Damage to a Metro Tunnel Due to Adjacent Excavation.- A Case Study of Floor Heaving of a Condominium RC-Building with Seven Stories.- Failure Case Study of Tieback Wall in Urban Area, Korea.- Forensics of Pile Foundations Subjected to Earthquake Induced Liquefaction and Lateral Spreading.- Piping Failure of a Metro Tunnel Construction.- Forensic Analysis of Failure of Retaining Wall.- Role of Reliability in Forensic Geotechnical Engineering.- Important Role of Uncertainty in Forensic Geotechnical Engineering.- Technical, Ethical, and Legal Issues with Forensic Geotechnical Engineering - A Case History.- Forensic Engineering, Legal Considerations, and Property Damage Assessment from Construction Vibrations.- A Case Study of Observational Method for a Failed Geotechnical Excavation in Singapore.
A Framework for Forensic Foundation Engineering.- Forensic Geotechnical Engineering Theory and Practice.- Guidelines for Forensic Investigation of Geotechnical Failures.- Caisson Failure Induced by Wave Action.- Forensic Geotechnical Engineering Investigations: Data Collection.- Diagnosis of Geotechnical Failure Causes Using Bayesian Networks.- Back Analyses in Geotechnical Engineering.- Back Analysis of Slope Failures to Design Landslide Stabilizing Piles.- Back Analyses in Forensic Geotechnical Engineering.- Instrumentation and Monitoring for Forensic Geotechnical Engineering.- Analysis of the Causes of Undue Movements of a Retaining Wall used to form a Deep Basement in Sandstone and Consequent Damage to an Adjacent Canal.- Failure Mechanism of Anchored Retaining Wall Due to the Breakage of Anchor Head.- Backwards Problem in Geotechnical Earthquake Engineering.- Failure Analysis of Underground Construction – Lessons Learned from Taiwan.- Failure Analysis of a Highway Dip Slope Slide.- Characterization of Failure at a Large Landslide in Se Queensland by Geological Mapping, Laboratory Testing, Instrumentation and Monitoring.- Post-liquefaction Data Collection and Analyses for Earthquakes in New Zealand.- Forensic Geotechnics – Some Case Studies from Singapore.- Technical Shortcomings Causing Geotechnical Failures: Report of Task Force 10, TC 302.- Effects of Vibration by Demolition to nearby Machine Shop Floor – Wave Measurement for Dynamic Property of Ground.- A Case of Piping in Sand under a Dam and its Back Analysis.- Influence of Vibrations on Installation of Bored Piles.- Aspects regarding Management of Soil Risk.- Forensic Studies for Failure in Construction of an Underground Station of the Kaohsiung MRT System.- Damage to a Metro Tunnel Due to Adjacent Excavation.- A Case Study of Floor Heaving of a Condominium RC-Building with Seven Stories.- Failure Case Study of Tieback Wall in Urban Area, Korea.- Forensics of Pile Foundations Subjected to Earthquake Induced Liquefaction and Lateral Spreading.- Piping Failure of a Metro Tunnel Construction.- Forensic Analysis of Failure of Retaining Wall.- Role of Reliability in Forensic Geotechnical Engineering.- Important Role of Uncertainty in Forensic Geotechnical Engineering.- Technical, Ethical, and Legal Issues with Forensic Geotechnical Engineering – A Case History.- Forensic Engineering, Legal Considerations, and Property Damage Assessment from Construction Vibrations.- A Case Study of Observational Method for a Failed Geotechnical Excavation in Singapore.
A Framework for Forensic Foundation Engineering.- Forensic Geotechnical Engineering Theory and Practice.- Guidelines for Forensic Investigation of Geotechnical Failures.- Caisson Failure Induced by Wave Action.- Forensic Geotechnical Engineering Investigations: Data Collection.- Diagnosis of Geotechnical Failure Causes Using Bayesian Networks.- Back Analyses in Geotechnical Engineering.- Back Analysis of Slope Failures to Design Landslide Stabilizing Piles.- Back Analyses in Forensic Geotechnical Engineering.- Instrumentation and Monitoring for Forensic Geotechnical Engineering.- Analysis of the Causes of Undue Movements of a Retaining Wall used to form a Deep Basement in Sandstone and Consequent Damage to an Adjacent Canal.- Failure Mechanism of Anchored Retaining Wall Due to the Breakage of Anchor Head.- Backwards Problem in Geotechnical Earthquake Engineering.- Failure Analysis of Underground Construction - Lessons Learned from Taiwan.- Failure Analysis of a Highway Dip Slope Slide.- Characterization of Failure at a Large Landslide in Se Queensland by Geological Mapping, Laboratory Testing, Instrumentation and Monitoring.- Post-liquefaction Data Collection and Analyses for Earthquakes in New Zealand.- Forensic Geotechnics - Some Case Studies from Singapore.- Technical Shortcomings Causing Geotechnical Failures: Report of Task Force 10, TC 302.- Effects of Vibration by Demolition to nearby Machine Shop Floor - Wave Measurement for Dynamic Property of Ground.- A Case of Piping in Sand under a Dam and its Back Analysis.- Influence of Vibrations on Installation of Bored Piles.- Aspects regarding Management of Soil Risk.- Forensic Studies for Failure in Construction of an Underground Station of the Kaohsiung MRT System.- Damage to a Metro Tunnel Due to Adjacent Excavation.- A Case Study of Floor Heaving of a Condominium RC-Building with Seven Stories.- Failure Case Study of Tieback Wall in Urban Area, Korea.- Forensics of Pile Foundations Subjected to Earthquake Induced Liquefaction and Lateral Spreading.- Piping Failure of a Metro Tunnel Construction.- Forensic Analysis of Failure of Retaining Wall.- Role of Reliability in Forensic Geotechnical Engineering.- Important Role of Uncertainty in Forensic Geotechnical Engineering.- Technical, Ethical, and Legal Issues with Forensic Geotechnical Engineering - A Case History.- Forensic Engineering, Legal Considerations, and Property Damage Assessment from Construction Vibrations.- A Case Study of Observational Method for a Failed Geotechnical Excavation in Singapore.
A Framework for Forensic Foundation Engineering.- Forensic Geotechnical Engineering Theory and Practice.- Guidelines for Forensic Investigation of Geotechnical Failures.- Caisson Failure Induced by Wave Action.- Forensic Geotechnical Engineering Investigations: Data Collection.- Diagnosis of Geotechnical Failure Causes Using Bayesian Networks.- Back Analyses in Geotechnical Engineering.- Back Analysis of Slope Failures to Design Landslide Stabilizing Piles.- Back Analyses in Forensic Geotechnical Engineering.- Instrumentation and Monitoring for Forensic Geotechnical Engineering.- Analysis of the Causes of Undue Movements of a Retaining Wall used to form a Deep Basement in Sandstone and Consequent Damage to an Adjacent Canal.- Failure Mechanism of Anchored Retaining Wall Due to the Breakage of Anchor Head.- Backwards Problem in Geotechnical Earthquake Engineering.- Failure Analysis of Underground Construction – Lessons Learned from Taiwan.- Failure Analysis of a Highway Dip Slope Slide.- Characterization of Failure at a Large Landslide in Se Queensland by Geological Mapping, Laboratory Testing, Instrumentation and Monitoring.- Post-liquefaction Data Collection and Analyses for Earthquakes in New Zealand.- Forensic Geotechnics – Some Case Studies from Singapore.- Technical Shortcomings Causing Geotechnical Failures: Report of Task Force 10, TC 302.- Effects of Vibration by Demolition to nearby Machine Shop Floor – Wave Measurement for Dynamic Property of Ground.- A Case of Piping in Sand under a Dam and its Back Analysis.- Influence of Vibrations on Installation of Bored Piles.- Aspects regarding Management of Soil Risk.- Forensic Studies for Failure in Construction of an Underground Station of the Kaohsiung MRT System.- Damage to a Metro Tunnel Due to Adjacent Excavation.- A Case Study of Floor Heaving of a Condominium RC-Building with Seven Stories.- Failure Case Study of Tieback Wall in Urban Area, Korea.- Forensics of Pile Foundations Subjected to Earthquake Induced Liquefaction and Lateral Spreading.- Piping Failure of a Metro Tunnel Construction.- Forensic Analysis of Failure of Retaining Wall.- Role of Reliability in Forensic Geotechnical Engineering.- Important Role of Uncertainty in Forensic Geotechnical Engineering.- Technical, Ethical, and Legal Issues with Forensic Geotechnical Engineering – A Case History.- Forensic Engineering, Legal Considerations, and Property Damage Assessment from Construction Vibrations.- A Case Study of Observational Method for a Failed Geotechnical Excavation in Singapore.