PVT Analysis & EoS Modeling
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PVT Analysis & EoS Modeling
This self-paced course provides extensive knowledge on reservoir fluid characterization, covering fluid sampling, laboratory experiments, and Equation of State (EOS) modeling. It focuses on the analytical workflows required to validate PVT data and prepare inputs for reservoir studies.
Description
Understanding reservoir fluid behavior is critical for accurate field development planning and production optimization. This e-learning program offers a deep dive into the principles of PVT analysis, from sample acquisition to advanced Equation of State (EOS) modeling. Participants will explore critical methodologies such as Constant Composition Expansion (CCE), Differential Vaporization (DL), and Constant Volume Depletion (CVD) . The course emphasizes the theoretical and analytical frameworks necessary to characterize fluids, tune EOS models, and ensure data quality for black oil and compositional studies.
Accurate characterization of reservoir fluids is the backbone of any successful asset management strategy. This course introduces the integrated workflows necessary to interpret laboratory reports and build robust mathematical fluid models. By mastering the physics of phase behavior and EOS tuning, learners will gain the skills to predict fluid behavior under various reservoir and surface conditions.
Participants will learn to characterize reservoir fluids using Equations of State (EOS) and interpret comprehensive PVT laboratory reports. Learners will acquire the skills to perform Quality Control (QC) on fluid data, select appropriate correlations for missing data, and tune EOS models for accurate phase behavior prediction . The course enables engineers to handle complex tasks such as splitting and lumping components, simulating gas injection miscibility, and assessing flow assurance risks.
This is a self-paced e-learning program designed to provide a deep understanding of fluid phase behavior through theoretical lectures and analytical case studies. The methodology focuses on the fundamental principles and calculation workflows of PVT analysis and EOS development, allowing professionals to master characterization techniques and data validation through rigorous analysis.
Organizations will benefit from engineering teams equipped to rigorously validate PVT data, ensuring that reservoir models are built on accurate fluid descriptions. By applying advanced EOS tuning and Quality Assurance techniques, companies can reduce uncertainty in reserve estimation, optimize production strategies, and mitigate flow assurance risks in surface facilities.
You will gain advanced technical competence in fluid characterization, mastering the ability to bridge the gap between laboratory measurements and theoretical modeling. This training enhances your analytical skills in key areas such as phase behavior interpretation, EOS regression, and miscibility evaluation, empowering you to confidently manage complex fluid studies.
Petroleum Engineers
Reservoir Engineers
Production Engineers
Processing Engineers
Module 1: Fluid Fundamentals & Sampling
Module 2: Laboratory Experiments (Black Oil)
Module 3: Advanced Gas Condensate Tests
Module 4: Equation of State (EOS) Principles
Module 5: EOS Tuning & Characterization
Module 6: Advanced Applications
On successful completion of this training course, PEA Certificate will be awarded to the delegates.
This course has been meticulously developed by a seasoned PEA expert renowned in the oil and gas industry. With extensive hands-on experience and a proven track record in delivering innovative solutions, our trainer brings a wealth of technical expertise, deep industry insight, and a commitment to excellence. Learners can trust that they are gaining knowledge from a leading authority whose dedication to professional development ensures you receive only the highest-quality training to elevate your skills and career prospects.
Frequently Asked Questions
All course bookings made through PEA are strictly non-refundable. By registering for a course, you acknowledge and accept that all fees are payable in full and are not subject to refund under any circumstances, including changes in personal or professional commitments or partial attendance.
PEA reserves the right to make reasonable adjustments to course content, trainers, or schedules where necessary, without entitling delegates to a refund. Comprehensive details of each course — including objectives, target audience, and content — are clearly outlined before enrolment, and it is the responsibility of the delegate to ensure the course's suitability prior to booking.
For any inquiries related to cancellations or bookings, please contact our support team, who will be happy to assist you.