SUB 604
Hydrogen Energy – Technology, Production, Storage, Transport, Economy and Utilization
| Code | Date | Location | price (€)* |
|---|---|---|---|
| SUB 604 | 15 - 19 Mar 2027 | Online | 3300 |
| SUB 604 | 6 - 10 Dec 2027 | Online | 3300 |
| SUB 604 | 24 - 28 May 2027 | Houston | 4400 |
| SUB 604 | 9 - 13 Aug 2027 | Houston | 4400 |
* Prices are subject to VAT and local terms. Ph.D. students, groups (≥ 3 persons) and early bird registrants (8 weeks in advance) are entitled to a DISCOUNT!
The hydrogen economy is increasingly important for decarbonization and achieving net-zero emissions. Renewable hydrogen offers a clean alternative for energy storage, transportation, and utilization. This course covers hydrogen production from renewable sources, storage, transportation, utilization, and production hub design and operation. Participants will explore commercial applications, technological challenges, innovations, maintenance and integrity, as well as economic and risk analysis, including estimation of the Levelized Cost of Hydrogen (LCOH) and Electricity (LCOE) using industry software.
This is a 5-day course designed to provide participants with a complete understanding of flow assurance challenges and their mitigations in design and operation of subsea oil and gas production systems under shallow water, deepwater and ultra-deep-water environments. The course begins with the description of subsea production systems and impact of flow assurance and operability challenges on the system design and operation. This is followed by the analysis of reservoir fluids and impact of multiphase flow on production systems, pigging of flowlines, flow assurance solids and their controls, design of production systems in steady state and transient, hands-on training in industry software, among others. The last day of course concentrates on subsea production operations and production optimization using various methods in varying conditions of real-field operations, including the innovations and technological advances in deepwater and ultra-deepwater subsea field development.
o An Overview of Energy Transition
o The Hydrogen economy
o Current Status of Hydrogen Economy
o Current Status of Hydrogen Utilization
o Future forecasts of Hydrogen Utilization
o Case Study – Field Examples
o Hydrogen Structures and Properties
o Hydrogen Production Using Coal Energy
o Hydrogen Production Using Nuclear Energy
o Hydrogen Production Using Natural Gas
o Relative Performances of Producing Hydrogen
o Case Study – Field Example
o Hydrogen Production from Geothermal Energy
o Hydrogen Production from Hydro Energy
o Hydrogen Production from Ocean Energy
o Hydrogen Production from Solar Energy
o Hydrogen Production from Biomass Energy
o Hydrogen Production - Onshore Wind Energy
o Hydrogen Production - Fixed Offshore Farm
o Design of Fixed Offshore Hydrogen Hubs
o Hydrogen Production - Floating Offshore Farm o Case Study – Offshore Fixed Wind Farm
o Case Study – Offshore Floating Wind Farm
o Water Electrolysis Technologies
o Hydrogen Storage & Technologies
o Hydrogen Transport & Technologies
o Hydrogen Production and Utilization
o Hydrogen Production Planning
o Hydrogen Costs & Risks Management
The instructor holds a Ph.D. in Chemical Engineering–Thermodynamics and has over 40 years of experience in subsea production systems, flow assurance, production chemistry, subsea processing, multiphase boosting, long-distance tiebacks, thermodynamics, and project implementation. He has worked with major organizations including Halliburton, TechnipFMC, Worley, and McDermott. Since 2016, he has served as Professor of Subsea Engineering in USA, with teaching and research focused on deepwater oil & gas production, renewable energy, and the hydrogen economy. His teaching portfolio includes Subsea Engineering, Flow Assurance, Production Operations, Production Chemistry, Thermodynamics, and Hydrogen Economy. He has developed software for hydrate, wax, scale, asphaltene, corrosion, phase behavior, and hydrogen production, and provides training in PVTSim Nova, Multiflash, Pipesim, and OLGA. He is a recognized flow assurance expert, active in SPE, SUT, and ASME, and has published over 150 research papers in journals, conferences, and books.
The course is designed for engineers involved in hydrogen production, processing, transportation, and utilization across onshore and offshore industries. It focuses on renewable energy and green hydrogen, enabling participants to evaluate production technologies, operational challenges, costs, risks, emissions reduction, and safe hydrogen transport for various industrial applications.
Advance
After completing this course, participants will learn:
o Assess key factors in developing the Hydrogen Economy and renewable hydrogen for industrial decarbonization.
o Examine hydrogen’s role in transporting and storing renewable energy.
o Understand safe and economical green hydrogen production from renewable sources.
o Analyze hydrogen applications in transportation, chemicals, refineries, steel, and ammonia production.
o Compare hydrogen with electrification and renewable hydrocarbon fuels.
o Evaluate costs, risks, system design, operation, storage, transport, and utilization.
Registration is now OPEN!
* Prices are subject to VAT and local terms. Ph.D. students, groups (≥ 3 persons) and early bird registrants (8 weeks in advance) are entitled to a DISCOUNT!
For more details and registration please send email to: register@petro-teach.com
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