Advanced PVT EOS & Flow Assurance Modeling
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Advanced PVT EOS & Flow Assurance Modeling - PVT26
| Code | Date | Time | Duration | Location | Currency | Team of 10 Per Person | Team of 7 Per Person | Early Bird Fee Per Person | Normal Fee Per Person |
|---|---|---|---|---|---|---|---|---|---|
| PVT26 | 02 - 13 Nov 2026 | 10:30 PM Indian Time |
4 Hours Per Day
|
Zoom Online
|
USD
|
2000
|
2250
|
2500
|
3000
|
The Classes Will be from Monday to Friday - 4 Hours / Class for 2 Weeks.
Boost your team's skills and your budget! Enjoy group discounts for collaborative learning. Send an inquiry to info@peassociations.com.
This training is also available as an on-demand / self-paced course. To register for the e-learning version, please email us at training@peassociations.com .
Advanced PVT EOS & Flow Assurance Modeling
This course delves into advanced PVT (Pressure-Volume-Temperature) and EOS (Equation of State) modeling techniques essential for flow assurance in oil and gas production. Participants will learn to accurately simulate fluid behavior and predict flow challenges, enhancing production optimization and operational safety.
Description
Demo Class
Flow assurance challenges are a critical concern in oil and gas production, with the potential to severely impact operations if not managed effectively. This course focuses on advanced techniques for PVT and EOS modeling, providing the skills needed to ensure optimal fluid handling throughout the production process. Participants will explore cutting-edge software tools and case studies to better understand how to predict and resolve flow assurance problems.
- Gain a thorough understanding of advanced PVT and EOS concepts in oil and gas.
- Learn to model fluid behavior and phase changes under varying temperature and pressure conditions.
- Develop skills in identifying and mitigating flow assurance challenges such as hydrates, wax, and asphaltenes.
- Apply best practices in multiphase flow modeling and flow assurance strategies.
- Enhance production performance by optimizing fluid flow and minimizing operational risks.
The course combines theoretical instruction with practical applications through real-world case studies, hands-on modeling exercises, and interactive discussions. Participants will use state-of-the-art software to perform PVT analysis and EOS modeling, ensuring they leave with both knowledge and practical skills.
Improved production efficiency by preventing flow assurance issues.
Develop specialized expertise in fluid modeling and flow assurance.
Day 1 –Reservoir Fluids & Downhole Sampling
- Overview of Reservoir Engineering
- Oilfield development Process
- Applications of Reservoir Fluid Data
- Overview of Formation Testers
- Reservoir Fluid Sampling
- Downhole Fluid Analyzers (LFA,
OFA, CFA, etc.)
- Wireline Fluid Sampling (MDT and
RDT tools)
- Fluid Sample Quality Control
- Types and Interpretation of
Pre-tests
Day 2 – Phase Behavior & Fluid Properties
- Analysis of Reservoir Fluids
- Classifications of the Reservoir
Fluids
- Hydrocarbon Phase Behavior
- Reservoir Fluid Properties
- Black Oil Properties &
Correlations
- Dry Gas Properties
- Formation Water Properties
- PVT Modeling
Day 3 – Laboratory Experiments for Oil & Data QA/QC
- Constant Composition Expansion
- Differential Vaporization Test
- Separator Tests
- Constant-Volume Depletion (CVD)
Test
- Viscosity Measurements
- Swelling Testing
- Minimum Miscibility Pressure
- Slim-tube Test
- PVT Data Validation & Reports
QA/QC
- Quality Assessment &
Consistency Evaluation of Hydrocarbon PVT Data
Day 4 – Laboratory Experiments for Gas Condensate & Data
QA/QC
- Gas Condensate Procedures
- Constant Composition Expansion
- Separator Tests
- Constant-Volume Depletion (CVD)
Test
- Quality Checking Laboratory
Reports
- PVT Data Validation & Reports
QA/QC
- Quality Assessment &
Consistency Evaluation of Hydrocarbon PVT Data
Day 5 –
Equations of State Modelling
- Development of the Equation of
State
- Types of Equations of State
- Vapor-Liquid Equilibrium
- Applications of the Equation of
State
- Simulation Considerations for PVT
Modeling
- Black Oil vs. Compositional
Simulation
- PVT Measurement & Simulation
by EOS
- Flash Test
Day 6 – Equations of State Characterization
- Characterizing Hydrocarbon-Plus Fractions
- Mixing Rules for Pseudo-Critical
Properties
- Splitting and Lumping
- Flash Calculations
- EOS Tuning and Data Requirement
- Regression of PVT Data
- Simulation Considerations for PVT
Modeling
- Simulation of Gas Injection
- Miscibility and Miscible Floods
Day 7 – Software Applications
- Fluid Handling and Definition
- Equations of State Parameters
- PVT Data Regression
- Correction Factors
- Interaction Parameters
- Cleaning of Mud Contamination
- QAQC of Fluids
Day 8 – Software Applications
- PVT modeling for a Black Oil
Sample
- PVT modeling for a Gas Condensate
Sample
- Simulation of Gas Injection
- Miscibility and Miscible Floods
- Software Applications
- Flow Assurance Problems
- Hydrate Formation: Prediction and
Identifying Minimum Inhibitor
- Wax Simulation: Wax Appearance
Temperature & Tuning
- Asphaltene Deposition &
Conditions
- Hydrate Conditions and Prediction
- Water Chemistry and Analysis
- Water-water Compatibility Testing
- Scale Prediction
On successful completion of this training course, PEA Certificate will be awarded to the delegates
Your Expert trainer is a highly accomplished Reservoir Engineering Team Leader possessing over 14 years of experience in the energy sector. He has a proven track record of success in reservoir management, characterization, and production optimization.
Reservoir Engineering: Leading and mentoring teams, conducting comprehensive reservoir evaluations, and developing strategies to maximize hydrocarbon recovery.
Data Analysis and Interpretation: Analyzing production data, material balance, RFT/MDT data, and pressure transients to optimize reservoir performance and identify opportunities for enhanced recovery.
Software Proficiency: Utilizing industry-standard software such as Techlog, Volumetric, DCA, MBE, OFM, and KAPPA for reservoir simulation, analysis, and hydrocarbon estimation.
Training and Development: Designing and delivering training courses on key reservoir engineering topics, including waterflooding, PVT analysis, and reservoir simulation.
Trainer has deep understanding of reservoir engineering principles, coupled with his strong analytical and problem-solving skills, make him a valuable asset. He consistently delivers technical solutions that drive efficiency and improve the performance of E&P portfolios.
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.