Topic outline
Training Methodology & Objectives
Training Methodology
This Trainee-centered course includes the following training methodologies:-
- Talking presentation Slides (PPT with audio)
- Simulation & Animation
- Exercises
- Videos
- Case Studies
- Gamification (learning through games)
- Quizzes, Pre-test & Post-test
Course Objectives
After completing the course, the employee will:-
Apply and gain an in-depth knowledge on integrated production modelling (IPM) Employ field analysis through integrated modeling and simulation including lower Slochteren reservoir Carryout production analysis, decline curve analysis, production split and water production split Apply well test analysis, IPM workflow, model input data and technical input data Recognize material balance equation and important parameters, relative permeability curves, pressure history matching Employ modeling of surface facilities and GAP modeling of surface facilities Review forecasting results and describe small oilfield integrated production management model Apply decision making process based on integrated model and integrated production systems optimization Optimize field X with integrated well/reservoir management and perform material balance analysis (MBAL) Carryout choke optimization using nodal analysis for well X-04 and choke optimization using nodal analysis for X-05 Employ debottlenecking of surface network and review information on supported operating systems and hardware requirements for IPM and DOF product suites Identify what operating systems and hardware are IPM and DOF suite applications supported on Course Description
This E-Learning course is designed to provide participants with a detailed and up-to-date overview of integrated production modelling (IPM). It covers the field analysis through integrated modeling and simulation and lower Slochteren reservoir; the production analysis, decline curve analysis, production split and water production split; the well test analysis, IPM workflow, model input data and technical input data; the material balance equation and important parameters, relative permeability curves and pressure history matching; the modeling of surface facilities and GAP modeling of surface facilities; the forecasting results and small oilfield integrated production management model
During this course, participants will learn the decision making process based on integrated model and integrated production systems optimization; the optimization of field X with integrated well/reservoir management; the material balance analysis (MBAL); the choke optimization using nodal analysis for well X-04 and choke optimization using nodal analysis for X-05; the debottlenecking of surface network, information on supported operating systems and hardware requirements for IPM and DOF product suites; and the operating systems and hardware that IPM and DOF suite applications supported on
Module 1 - Field Analysis through Integrated Modeling and Simulation
Contents:
- Introduction
- Research Objectives
- Geological Background
- Brief Field History and Location
- Regional Geology
- History of the Regional Geology
- Geological Setting
- Lower Slochteren Reservoir
- Depositional Environment and Facies Interpretation
- Video: Depositional Environment and Facies Interpretation
- Software
- Microsoft Excel 2007
- PIE version 2014.10
- MBAL from IPM version 10.0
- PROSPER from IPM version 10.0
- GAP from IPM version 10.0
- OFM
- PI ProcessBook
- Production Analysis
- Decline Curve Analysis
- Production Split
- Water Production Split
- Sensitivity & Uncertainty
- Module Quiz
Module 2 - Well Test Analysis
Contents:
- K5-F1 Well Tests
- K5-F2 Well Tests
- Video: What is Well Test Analysis?
- Uncertainty
- IPM Workflow
- Model Input Data
- Technical Input Data
- Sensitivity & Uncertainty
- Reservoir Model Development – MBAL
- Workflow
- Assumptions and Considerations
- Material Balance Equation and Important Parameters
- Relative Permeability Curves
- Pressure History Matching
- K5-F1
- K5-F2
- Sensitivity & Uncertainty
- Well Model Development – PROSPER
- Workflow
- Module Quiz
Module 3 - Assumptions and Considerations
Contents:
- Well Stability
- IPR & VLP Curve Correlation
- Sensitivity & Uncertainty
- Modeling of Surface Facilities – GAP
- Workflow
- Video: Well Test Analysis Workflow
- Assumptions and Considerations
- Model Results
- Optimization
- Forecasting Results
- Discussion
- Conclusions
- Recommendations
- Nomenclature
- Module Quiz
Module 4 - Small Oilfield Integrated Production Management Model
Contents:
- Introduction
- Integrated Oil Production Management Model
- Decision Making Process Based On Integrated Model
- Brief Application Presentation
- Conclusion
- Module Quiz
Module 5 - Integrated Production Systems Optimization: A Mature Niger Delta Field Case Study
Contents:
- Introduction
- Background
- Optimization of Field X With Integrated Well/Reservoir Management
- Material Balance Analysis (MBAL)
- Video: Material Balance Analysis in Reservoir
- Choke Optimization Using Nodal Analysis for Well X-04
- Criteria for Choke Selection
- Choke Optimization Using Nodal Analysis for X-05
- Debottlenecking of Surface Network
- Conclusion
- Module Quiz
Module 6 - Information on Supported Operating Systems and Hardware Requirements for IPM and DOF Product Suites
Contents:
- IPM Suite (Including Move)
- Platform Support and Hardware Requirements
- IPM Hardware Requirements
- Example GPU Hardware
- HARDLOCK – Network Licence Manager
- Hardware Requirements
- Video: IFM Solutions - IPM Software Tools
- DOF SUITE
- IFM Version 6.5
- IFM Hardware Requirements
- IVM Version 9.5
- IVM Hardware Requirements
- Information on IPM and DOF Software Architecture
- Benefits of 64-bit Applications
- Licensing
- Conversion From 32-bit To 64-bit
- Purchasing New or additional Licences
Module 7 - IPM 12.5, IVM 9.5 and IFM 6.5
Contents:
- Hardlock 11.5
- IPM 12.5
- MOVE
- Visual Workflow Engine
- IVM 9.5
- IFM 6.5
- Operating System Support
Module 8 - IPM Integrated Services
Contents:
- Worldwide Integrated Project Management
- Integrate to Simplify
- Why Integrated Services?
- Case Study: IPM Provides Fast and Customized Project Solutions, Reducing Well Cost by 40%
- Case Study: Schlumberger Lends Expertise in Argentine Unconventional Resource Project
- Case Study: Integrated Services (IS) Assistance Reduces Operating Time by 40% for Mansarovar, Colombia
- Case Study: Interdisciplinary Exploration of a New Basin Results in Important Discovery for the Operator
- Case Study: Services Integration Facilitates Multiple Discoveries
Module 9 - Petroleum Experts IPM and DOF Enhancements
Contents:
- GAP- Multiphase Network Modelling and Optimisation
- IPM 10 Development for GAP
- Prosper – Multiphase Well and Pipeline Nodal Analysis
- IPM 10 Development for Prosper
- Resolve – Advanced Integration A Vendor Neutral Solution Formulation Platform
- IPM 10 Development for RESOLVE
- Generic OpenServer
- Reveal – Simulator for Specialised Reservoir Studies
- IPM 10 Development for REVEAL
- Compositional PVT
- Polymer Degradation
- Thermal Transmissibility
- Well Solver Options
- Solver Options
- 12(+2) Parameter Generalised AICD Model
- SAGD Coupling to Surface
- Video: Steam Assisted Gravity Drainage (SAGD) - How does it Work?
- Water Chemistry Engine
- Interface and Visualisation
- Nexus Model Import
- MBAL – Analytical Reservoir Engineering Toolkit
- IPM 10 Development for MBAL
- DOF
- DOF (IFM 4.1 and IVM 7) Developments
- Calculations
- Calculations – Visual Workflows
- Data Management - Drivers
- Graphic Screens - Controls
- Architecture - Objectives
- IFM 4.1 Architecture
- IFM 4.1 with IVM 7
- Other IT considerations
- Time-zone/Culture Changes
- DOF Enhancements - Summary
- IFM & IVM Data Exchange
- Calculations - Classification
- IVM 7.0 Direction
- Graphic Screens - Templates
- Fundamentals – Data Model
- Engineering Workflows
- Module Quiz