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International Conference on Transforming Upstream: Breakthrough Technologies and Sustainability -

International Conference on Transforming Upstream: Breakthrough Technologies and Sustainability

Selected works promoting innovation and sustainable practices in the domain of hydrocarbon exploration and production

Amit Saxena, Sanket J. Joshi (Herausgeber)

Buch | Hardcover
2026
Springer Verlag, Singapore
978-981-95-6486-6 (ISBN)
CHF 224,65 inkl. MwSt
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This book presents select proceedings of the International Conference on Transforming Upstream (ICTU 2024): Breakthrough Technologies and Sustainability and examines the latest advancements and future directions in upstream oil and gas operations, focusing on breakthrough technologies and sustainability practices. The critical aspects of the book include:


Digital Transformation, Automation, and AI/ML Applications for Oil Field Operations




Unlocking Unconventional Reservoirs
Novel Materials and Coatings for Corrosion Mitigation
Advancements in Drilling, Completion, and Well Intervention Technologies
Enhanced Production and Field Management Techniques
Strategies for Improving Recovery from Mature Fields
Advances in Reservoir Modeling and Simulation
Produced Water Management, Reuse, and Recycling
Energy Transition and Decarbonization: Innovative CCUS Approaches
Energy Markets, Strategies, and Financial Innovations


This book is a valuable reference for a wide range of readers, including beginners, researchers, industry professionals, and policymakers interested in the Transformation of oil and gas upstream technologies and sustainable future.

Amit Saxena is an Assistant Professor in the Department of Petroleum Engineering and Geoengineering at Rajiv Gandhi Institute of Petroleum Technology (RGIPT), Jais, India, where he also serves as Co-Chairman of Training and Placement. He earned his Ph.D. in Petroleum Engineering from IIT (Indian School of Mines) Dhanbad. Dr. Saxena's research focuses on developing multifunctional additives for oil field applications, including enhanced oil recovery, drilling fluids, and wellbore cementing, with particular emphasis on indigenous technology solutions. He has authored over 50 publications in international journals and conference proceedings, contributed chapters to several books, including those published by Elsevier and Springer, and filed multiple patents. His research has been supported by major Indian oil companies including ONGC, Oil India Limited, and HPCL Mittal Energy Limited.He has delivered keynote addresses at international conferences and received recognition including the prestigious Indian National Science Academy fellowship (2018-19). Dr. Saxena is actively involved in training industry professionals and has successfully mentored numerous graduate students in petroleum engineering research. Sanket J. Joshi is a Professor and Deputy Director at Amity Institute of Microbial Technology, Amity University Rajasthan, Jaipur, India. He served as Deputy Director, Oil & Gas Research Center (2018-2023) and an Application Specialist at the Central Analytical and Applied Research Unit, Sultan Qaboos University, Oman (2013-2023). He holds BSc and MSc degrees from Sardar Patel University, India, and a PhD from M. S. University of Baroda, India – all in Microbiology. Prof. Joshi has 20 years of academic teaching and research experience and 4 years of industrial R&D experience in India and Oman. His primary research interests include Energy, Environmental Bioremediation, waste to energy and biofuels, and Microbial Biotechnology. He has 155 scientific publications and more than 70 conference abstracts, to his credit. He is book series editor of ‘Advances in Biotechnology and Bioengineering', Elsevier INC.; Environmental Biotechnology (Taylor & Francis) and Associate/Editor/Guest editor for several international journals. He is listed among the 2% of the "Elsevier” list of the highly cited scientists in the world since 2022 for excellence in scientific research in ‘Energy’ and ‘Biotechnology’ disciplines.

Revolutionizing Oil Well Completions: The Impact of Digital Technologies and Case Studies from Diverse Geographies.- Transforming Reservoir Exploration: Predicting NPHI Using Machine Learning in Data-Scarce Circumstances.- Data-driven predictive modeling of synthetic Shear wave log for offset wells using conventional Well log data: A case study in the Volve field.- Seismic Interpretation Through AI and ML: A Key Paradigm Shift in Mahanadi Onland.- Geomechanical Strength Evaluation of Formate-Based Completion Fluid System with Coaliferous and Non- Coaliferous Shales.- Improving Cement Integrity in HPHT Wells by Using Silica nanoparticles in Oil Well Cement Slurry.- Introducing Fungal Chitosan as a Proppant for a Sustainable and Economical Alternative in Enhanced Geothermal Systems (EGS).- Comparative Analysis of Static Pressure Distribution and Vane Loading on Different Vane Profiles.- CO2 Utilization in Enhanced Oil Recovery: Surfactant and Polymer-based Carbonated Water Flooding Strategies.- Reuse of Produced Water for Drilling and Completion Fluids Using Resin Treatment.- Role of Palynology in Hydrocarbon Exploration.-  Prediction of elastic attributes of reservoir rocks under fluid substitution circumstances: An implication for CO2 sequestration in Krishna-Godavari Basin, India.- Integrated Exploration Approach for Redefining Hydrocarbon prospectivity in the Andaman-Nicobar Basin.- Investigating the Impact of Temperature on the Stability of Foam Fracturing Fluids in Tight Reservoirs: An Experimental Analysis.- Novel 3D Sponge: A Green Solution for Oil Spill Recovery.- Synthesis of Biodiesel from used cooking oil using metal modified bentonite clay catalyst.

Erscheint lt. Verlag 10.4.2026
Reihe/Serie Lecture Notes in Civil Engineering
Zusatzinfo Approx. 150 p.
Verlagsort Singapore
Sprache englisch
Maße 155 x 235 mm
Themenwelt Informatik Theorie / Studium Künstliche Intelligenz / Robotik
Naturwissenschaften Geowissenschaften Geologie
Schlagworte Advancements • Engineering • Hydrocarbon • Petroleum • sustainability • Technology • upstream
ISBN-10 981-95-6486-7 / 9819564867
ISBN-13 978-981-95-6486-6 / 9789819564866
Zustand Neuware
Informationen gemäß Produktsicherheitsverordnung (GPSR)
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