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Geoenvironmental Practices and Sustainability: Linkages and Directions: Developments in Geotechnical Engineering

Editat de G.L. Sivakumar Babu, Krishna R. Reddy, Anirban De, Manoj Datta
en Limba Engleză Hardback – 14 iun 2017
This volume is a compilation on issues related to sustainable practices in geo-environmental engineering, particularly as applying to developing nations such as India. While, the developed world has already developed some solutions such as landfills, developments in landfills, barriers and liners in the North America and waste-to-energy and waste incineration in Europe, developing countries like India are trying to figure out ways which suit the present condition without compromising the future needs and comforts. This volume presents case studies on the various problems and solutions adopted for different sites. Although a common approach for all the problems is not feasible or recommend, this collection aims to provide a compendium on the current efforts underway and to help achieve common ground for the practitioners and researchers involved. The works included here give insight to the possible development of resilient and sustainable structures (like offshore wind turbines) and energy geotechnics. The book covers topics such as liners and barrier systems, use of recycled and waste materials, waste management and hazard assessment, sustainable infrastructure, and sustainability and the environment. The contents of this book will be useful to researchers and professionals working in geo-environmental engineering. The book will also be useful to policy makers interested in understanding geotechnical concerns related to sustainable development. 
 
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Specificații

ISBN-13: 9789811040764
ISBN-10: 9811040761
Pagini: 295
Ilustrații: XV, 343 p. 160 illus., 81 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.75 kg
Ediția:1st ed. 2017
Editura: Springer Nature Singapore
Colecția Springer
Seria Developments in Geotechnical Engineering

Locul publicării:Singapore, Singapore

Cuprins

Geophysical Imaging of Landfill Interiors: Examples from Northern Illinois, USA.- Evolution of Municipal Solid Waste Shear Strength Parameters with Biodegradation – A Large-Scale Laboratory Study.- Environmental Benign Electrokinetics for Landslides Mitigation.- Recent Advances in Seismic Design of MSW Landfill Considering Stability.- Dynamic properties of Municipal Solid Waste and Amplification of Landfill site.- A Methodology for Load Resistance Factor Design (LRFD) for MSW Landfill Slopes.- Rehabilitation and Expansion of Operational Municipal Solid Waste (MSW) Dumps of India.- Surface Charge Properties and Particle Size Analysis of Red Mud Waste from Zeta Potential Measurements.- Sustainable Management of Dredged Sediments and Waste Using Geotextile Tube Dewatering System.- Site Characterization of Landfills through In-Situ Testing.- Effective Management of Aged Stockpiled Solid Wastes in India.- Advances in Raman Spectroscopy for the Geoenvironment.- Sustainable Design of Monopile Supported Offshore Wind Turbine Considering Climate Change.- Axial Stress Distribution in Geothermal Energy Pile Group in Sand.- Importance of Non-stationarity in Sustainability and Resilience of Geo-Infrastructure.- Reliability based sustainable design of piled-raft supported structure.- Quality Control and Quality Assurance for Large Infrastructure Projects.- Risk Management: Challenges and Practice for U.S. Dam and Levee Safety.- Energy Geotechnics – Towards a Sustainable Energy Future.- Performance evaluation of coal ash-based barrier based landfill covers subjected to flexural distress.- Sustainability analysis of the Vertical Barriers based on Energy and Carbon Assessment for leachate containment.- Geotechnical Characterization and Performace Assessment of Organo clay Enhanced Bentonie Mixtures for Use in Sustainable Barriers.- Observations of Field Condition of an Exposed Geosynthetics Liner System.- Advances in Bentonite-Based Containment Barriers.-Feasibility Study of Sand–Tire Chips Mixtures as Backfill Material in Retaining Walls.- Shredded Waste Tires as a Geomaterial.- Strength Characteristics of Geopolymer Fly ash Stabilized Reclaimed Asphalt Pavement Base Courses.- Sustainable Waste Management Using MSE Berms at Disposal Sites.- Heavy Metal Removal by Aquatic Plants and Its Disposal by Using As a Concrete Ingredient.- Human Health Risk Based Sustainable Management For A Contaminated Site -A Case Study.- Coupled Hydro-Bio-Mechanical Modeling of Bioreactor Landfills: New Modeling Framework and Research Challenges.- Electromagnetic Enhancement of Microbially-Induced Calcite Precipitation.

Notă biografică

G L Sivakumar Babu completed his Ph.D.(Geotechnical Engineering) in 1991 from Indian Institute of Science, Bangalore, India, after earning his Masters Degree (Soil Mechanics Foundation Engg.) in 1987 from Anna University, Madras and B.Tech. (Civil Engineering) in 1983 from Sri Venkateswara University, Tirupati. He worked in Central Road Research Institute and International Airports Authority of India New Delhi. He joined Indian Institute of Science in 1997, where his teaching and research activities include courses on Geomechanics, Soil investigations, risk and reliability applications in Civil Engineering, Pavement Engineering, Geosynthetics, and Ground Improvement. He is Editor-in-Chief of the Indian Geotechnical Journal and is Editorial Board Member of 1) Journal of Hazardous, Toxic, and Radioactive Waste, ASCE, 2) International Journal of Geomechanics, ASCE 3) International Journal of  Georisk -Assessment and Management of Risk for Engineered Systems and Geohazards, Taylor & Francis Group, and 4) International journal of systems assurance engineering and management, Springer Publications, 5) International Journal of Geosynthetics and Ground Engineering and Ground Improvement, Journal of Institution of Civil Engineers, UK (during 2006 to 2013). He is the Governor of Region 10, ASCE, Ex-President of ASCE (India Section), a member of Sectoral Innovation Council, Ministry of Road Transport and Highways and Highway Research Board (Identification, Monitoring and Research Application) Committee, Indian Roads Congress, New Delhi. He worked as Humboldt Fellow & Visiting Scientist in Germany during June 1999- July 2000 and as Visiting Scholar, Purdue University, Lafayette, USA during 2/95 - 2/96. He is presently the Chairman, International Technical Committee (TC-302) on Forensic Geotechnical Engineering (FGE) of International Society for Soil Mechanics and Geotechnical Engineering (ISSMGE) and served as its secretary during 2005-2009 and 2009-2013. He was a member in International Technical Committee (TC-32) on Risk assessment in Geotechnical Engineering during 1997-2001 and 2001-2005. He is a Fellow of ASCE, Life Member of Indian Roads Congress, Fellow of Institution of Engineers India, Fellow of Indian Geotechnical Society, Fellow of Association of Consulting Engineers (ACCE). He has guided a number of students for research degrees (Ph.D and M. Sc (Engg.) and wrote a book on soil reinforcement and geosynthetics, edited six books and proceedings and has over 200 publications to his credit in journals and conferences of international repute. He has received several awards for his work such as best PhD thesis in geotechnical Engineering in India from Indian Geotechnical Society, Humboldt fellowship from Germany, DST Boyscast Fellowship, Young Engineer from Central Board of Irrigation and Power, New Delhi and a few awards for best papers from ASCE and Indian Geotechnical Society.
Dr. Krishna R. Reddy is a Professor of Civil and Environmental Engineering, the Director of Sustainable Engineering Research Laboratory (SERL), and also the Director of the Geotechnical and Geoenvironmental Engineering Laboratory (GAGEL) in the Department of Civil and Materials Engineering at the University of Illinois at Chicago (UIC). He has over 25 years of research, teaching and consulting experience within the broad fields of civil, geotechnical, materials and environmental engineering, addressing the nexus among sustainability, resiliency, infrastructure, water, energy, and the environment in urban setting. His research expertise includes: (1) environmental remediation of soils, sediments, groundwater, and stormwater; (2) solid and hazardous waste management and landfill engineering; (3) engineering applications of waste/recycled materials; (4) life cycle assessment and sustainable engineering; and (5) geotechnical engineering. His research is funded by the U.S. National Science Foundation, the United States Environmental Protection Agency, several prominent state and local government agencies, and industries. His research includes laboratory studies, field experiments, and computer modeling, ultimately leading to practical solutions to the real-world problems.  He is the author of three books: (1) Geoenvironmental Engineering: Site Remediation, Waste Containment, and Emerging Waste Management Technologies, (2) Electrochemical Remediation Technologies for Polluted Soils, Sediments and Groundwater, and (3) Sustainable Remediation of Contaminated Sites. He is also author of 182 journal papers (with h-index of 42 and number of citations 6149), 15 edited books and conference proceedings, 10 book chapters, and 170 full conference papers. Dr. Reddy has given 160 invited presentations in the U.S.A. and 15 other countries (Canada, U.K., Germany, France, Spain, Italy, India, Sri Lanka, China, Hong Kong, Thailand, South Korea, Japan, Brazil and Colombia). He has served or currently serves as an Associate Editor or Editorial Board Member of over 10 different journals, including the ASCE Journal of Geotechnical and Geoenvironmental Engineering, the ASTM Geotechnical Testing Journal, the ASCE Journal of Hazardous, Toxic and Radioactive Waste, the Journal of Hazardous Materials, among others. He has also served on various professional committees, including the Geoenvironmental Engineering Committee and Technical Coordinating Council of Geo-Institute (GI) of the American Society of Civil Engineers (ASCE) and the Environmental Geotechnics Committee of International Society of Soil Mechanics and Geotechnical Engineering (ISSMGE).  He has received several awards for excellence in research and teaching, including the ASTM Hogentogler Award, the UIC Distinguished Researcher Award, the University of Illinois Scholar Award, and the University of Illinois Award for Excellence in Teaching. He is a Fellow of the American Society of Civil Engineers (FASCE), a Diplomateof Geotechnical Engineering (DGE), and a Board Certified Environmental Engineer (BCEE). He is also a registered Professional Civil Engineer (PE) and an EnvisionTM Sustainability Professional (ENV SP).
Dr. Anirban De is an Associate Professor and Chairman of Civil and Environmental Engineering Department at Manhattan College, located in New York City.   Prior to joining his current position, Dr. De served as a Project Engineer in a major geoenvironmental engineering firm, where he was responsible for tasks ranging from site characterization and design to construction and post-closure monitoring of municipal solid waste and hazardous waste landfills. He has over twenty five years of experience performing analyses and design in the field of geotechnical and geoenvironmental engineering. His current research interests include design of geosynthetic systems, site characterization, geotechnical centrifuge modeling, and settlement of landfills.  Additionalareas of research include physical and numerical modeling of high strain rate loading, such as effects of blasts and penetrations. His professional specialty is the design of geotechnical and geosynthetic components for a variety of geotechnical and geoenvironmental applications, as well as behavior of geotechnical systems under seismic, blasts, and other types of dynamic loading. He has authored one book on Geotechnical Site Characterization and numerous papers published in peer-reviewed journals and conference proceedings. He has served as a Principal Investigator (PI) or co-Principal Investigator (co-PI) on multiple projects sponsored by the National Science Foundation (NSF), in geotechnical engineering, as well as in engineering education.  He has served on various professional committees, including the Geotechnical Committee of the ASCE Metropolitan New York Section and the Geoenvironmental Engineering Committee of Geo-Institute (GI) of the American Society of Civil Engineers (ASCE).  Dr. De is a Fellow of the American Society of Civil Engineers (FASCE) and a registered Professional Civil Engineer (PE) in the states of California and New York.

Dr. Manoj Datta is currently Professor and Head of Civil Engineering Department at IIT Delhi where he has been teaching and conducting research since 1980. He has also held the office of Director of PEC University of Technology at Chandigarh and of Dean (Alumni & International Programmes) at IIT Delhi. His current areas of interest include environmental geotechnics, landfills, ash & tailings impoundments, embankments & dams, ground improvement, energy geotechnics, foundation engineering, education, accreditation and rankings. He has edited four books in the area of geoenvironmental engineering and co-authored a text book titled “Geotechnical Engineering” with Prof. S.K Gulhati. He has been associated with the Central Pollution Control Board, Ministry of Environment and Forests as well as Ministry of Urban Development in framing of guidelines and design manuals for Municipal Solid Waste landfills and Hazardous Waste landfills. He has received five best-paper awards of the Indian Geotechnical Society. He was awarded the IGS (Delhi Chapter) Leadership Award in July 2008. He delivered the prestigious IGS Annual Lecture in 2011 at Kochi.

Textul de pe ultima copertă

This volume is a compilation on issues related to sustainable practices in geo-environmental engineering, particularly as applying to developing nations such as India. While, the developed world has already developed some solutions such as landfills, developments in landfills, barriers and liners in the North America and waste-to-energy and waste incineration in Europe, developing countries like India are trying to figure out ways which suit the present condition without compromising the future needs and comforts. This volume presents case studies on the various problems and solutions adopted for different sites. Although a common approach for all the problems is not feasible or recommend, this collection aims to provide a compendium on the current efforts underway and to help achieve common ground for the practitioners and researchers involved. The works included here give insight to the possible development of resilient and sustainable structures (like offshore wind turbines) and energy geotechnics. The book covers topics such as liners and barrier systems, use of recycled and waste materials, waste management and hazard assessment, sustainable infrastructure, and sustainability and the environment. The contents of this book will be useful to researchers and professionals working in geo-environmental engineering. The book will also be useful to policy makers interested in understanding geotechnical concerns related to sustainable development.  

Caracteristici

Discusses global case studies and the solutions adopted Gives an insight into future prospects such as implementing sustainable infrastructures Includes lab and field studies and recommendations in terms of legal, moral and acceptable social norms