Risk Modeling for Offshore Energy: Success Path Method
The Risk Modeling for Offshore Energy: Success Path Method micro-credential is jointly developed by Argonne National Laboratory, Tulane University, and the University of Houston (UH). This online credential introduces learners to the principles of Safety and Process Safety Management (SPM) and risk assessment used to identify hazards, mitigate risks, and improve operational reliability in offshore energy systems. Through a combination of theory, case studies, and practical applications, participants gain insight into how safety frameworks support safe, reliable, and resilient operations. The curriculum covers foundational safety methodologies and real-world applications involving blowout preventers (BOPs), coiled tubing operations, and offshore wind turbine systems. By combining academic rigor with national laboratory expertise, the program equips learners with practical skills to assess risk and support safer decision-making across offshore energy and industrial operations.


Overview
Duration
8 Weeks
Format
Online
Price
Free
Deadline
November 2026
Why this Credential?
Risk management and process safety are essential to maintaining safe, reliable, and resilient energy operations. This micro-credential introduces participants to proven methodologies for identifying hazards, assessing risk, and implementing effective safety management practices in offshore energy environments. Through a blend of foundational concepts and real-world applications, learners will explore how Safety and Process Safety Management (SPM) principles are applied across offshore oil and gas and offshore wind systems. Participants will gain practical knowledge that supports safer decision-making, improved operational reliability, and stronger risk management capabilities.
Who Should Enroll?
This micro-credential is designed for:
- Undergraduate and graduate students interested in energy, engineering, safety, and risk management.
- Early-career professionals seeking foundational knowledge in process safety and risk assessment.
- Engineers and technical professionals working in energy, industrial, manufacturing, infrastructure, or related sectors.
- Safety, operations, and risk management professionals seeking to strengthen their understanding of hazard identification and risk mitigation.
- Individuals interested in offshore energy systems, operational reliability, and safety best practices.
No prior offshore energy experience is required.
This program is designed for both students and professionals looking to build foundational
knowledge in safety management, risk assessment, and operational risk reduction.
Curriculum
The program consists of 8 weeks of online coursework focused on safety management, risk assessment methodologies, and their application to offshore energy systems.
Core Topics Include
- Safety Fundamentals and Risk Assessment
- Safety and Process Safety Management (SPM)
- Implementing Safety Management Systems
- Advanced SPM Implementation Strategies
- Risk Management in Coiled Tubing Operations
- Blowout Preventer (BOP) Systems and Safety Considerations
- SPM Applications in Offshore Oil and Gas
- SPM Applications in Offshore Wind Energy
What You Will Earn
Upon successful completion of the Risk Modeling for Offshore Energy: Success Path Method micro-credential, participants will earn a digital certificate from the University of Houston. This credential recognizes knowledge in safety, risk assessment, and Safety and Process Safety Management (SPM) for offshore energy applications. The certificate can be added to your LinkedIn profile, résumé, CV, and professional portfolio to showcase your commitment to safety, risk management, and professional development.
Instructors

Ramanan Krishnamoorti
VP for Energy and Innovation, Professor of Petroleum Engineering, Professor of Chemistry
University of Houston

Dave Grabaskas
Group Manager, Licensing & Risk Assessments
Argonne National Laboratory

Dan Shantz
Associate Dean for Research and PhD Programs, Professor, The Entergy Chair in Clean
Energy Engineering
Tulane University

Bruce Hamilton
Group Leader, Grid Expansion and Interdependencies
Argonne National Laboratory

Sinem Perk
Principal Systems Scientist, Energy Systems and Infrastructure Analysis Division (ESIA)
Argonne National Laboratory

Vera Moiseytseva
Lecturer, Post-Doctoral Research Associate
Argonne National Laboratory

Yisha Xiang
Associate Professor, Industrial Engineering
University of Houston

Kyriakos D. Papadopoulos
Professor, School of Science & Engineering
Tulane University

Nabin Hitang
Graduate Research Assistant
University of Houston

Parviz Azizoz
Graduate Research Assistant
Tulane University