Fundamentals of Reservoir Simulation
Fundamentals of Reservoir Simulation, available at $199.99, has an average rating of 4.55, with 98 lectures, based on 129 reviews, and has 368 subscribers.
You will learn about Reservoir simulation technuques Reservoir engineering practices This course is ideal for individuals who are Engineers or Geoscientists or Students or Asset managers It is particularly useful for Engineers or Geoscientists or Students or Asset managers.
Enroll now: Fundamentals of Reservoir Simulation
Summary
Title: Fundamentals of Reservoir Simulation
Price: $199.99
Average Rating: 4.55
Number of Lectures: 98
Number of Published Lectures: 98
Number of Curriculum Items: 98
Number of Published Curriculum Objects: 98
Original Price: $199.99
Quality Status: approved
Status: Live
What You Will Learn
- Reservoir simulation technuques
- Reservoir engineering practices
Who Should Attend
- Engineers
- Geoscientists
- Students
- Asset managers
Target Audiences
- Engineers
- Geoscientists
- Students
- Asset managers
This is an Applied Reservoir Engineering course. You learn how to use a 3D software application platform to perform major Engineering tasks on a subsurface oil and gas formation.
You will learn how to Initialize the simulation and view results. You will learn how to compute OOIP, and QC the fluid in place results by comparing with volume from static models.
This course will be updated with more lectures, a one month after approval, so there are a lot more to learn.
Course Curriculum
Chapter 1: Course Introduction
Lecture 1: Course Content
Lecture 2: Course Prerequisite
Lecture 3: Learning Tools
Lecture 4: Downloads: Course Resources
Chapter 2: Integrated Reservoir Study
Lecture 1: What is Integrated Reservoir Study
Lecture 2: Petrophysics
Lecture 3: Geophysics
Lecture 4: Geology
Lecture 5: Summary
Chapter 3: Reservoir Simulation Overview
Lecture 1: What is Reservoir Simulation
Lecture 2: Data Gathering
Lecture 3: Static Modeling
Lecture 4: Model Up-scaling
Lecture 5: History Matching
Lecture 6: Predictions
Lecture 7: Summary
Chapter 4: Reservoir Simulation input Datafile
Lecture 1: RUNSPEC
Lecture 2: GRID
Lecture 3: PROPS
Lecture 4: SOLUTION
Lecture 5: SUMMARY
Lecture 6: REGION
Lecture 7: Summary
Chapter 5: Simulator Interface
Lecture 1: Sensor Simulator Interface
Lecture 2: Simulation Run
Lecture 3: Results Viewing
Lecture 4: Data Management
Lecture 5: New Simulation Project
Lecture 6: Summary
Chapter 6: 3D Simulation and Modeling Interface
Lecture 1: Introduction
Lecture 2: Application Interface
Lecture 3: Data Visualization
Lecture 4: Workflows
Chapter 7: Simple Simulation Grid Model
Lecture 1: Project Settings
Lecture 2: Simple Grid
Lecture 3: Zones and Layers
Lecture 4: Properties
Chapter 8: NEW Reservoir Engineering Project (Case Study)
Lecture 1: New Project Introduction
Lecture 2: Data Availability
Lecture 3: Geologic Model Review
Lecture 4: Geologic Model QC
Lecture 5: Geologic Model QC – Property Modeling
Lecture 6: Geologic Model QC – Grid Cell Volumes
Lecture 7: Geologic Model QC – Grid Cell Angles
Lecture 8: Geologic Model QC – Cell Inside-Out
Lecture 9: Geologic Model QC – Property Calculator
Lecture 10: Simulation Study Workflow
Lecture 11: Summary
Chapter 9: Reservoir Fluid Modeling (PVT)
Lecture 1: Fluid Modeling Introduction
Lecture 2: Phase (Envelope) Diagram
Lecture 3: Fluid Properties
Lecture 4: Make Fluids From Correlations
Lecture 5: Import PVT Table
Lecture 6: Viewing Fluid Model
Lecture 7: Summary
Chapter 10: Fluid Contacts (OWC and GOC)
Lecture 1: Fluid Contacts Introduction
Lecture 2: Types of Fluid Contacts
Lecture 3: Transition Zone
Lecture 4: Fluid Contacts Determination
Lecture 5: Modeling and Viewing Contacts
Chapter 11: Saturation Functions (SCAL)
Lecture 1: Saturation Functions Introduction
Lecture 2: Relative Permeability Functions
Lecture 3: Relative Permeability Endpoints
Lecture 4: Corey Functions
Lecture 5: Relative Permeability Modeling from Correlations
Lecture 6: Capillary Pressure Modeling from Correlations
Lecture 7: Rock Compressibility
Lecture 8: Import Relative Permeability Functions Table
Lecture 9: Summary
Chapter 12: Aquifer Modeling (Water Influx)
Lecture 1: Aquifer Introduction
Lecture 2: Aquifer Classification
Lecture 3: Water Influx Models
Lecture 4: Aquifer Modeling – 1
Lecture 5: Aquifer Modeling – 2
Lecture 6: Aquifer Modeling – 3
Chapter 13: Reservoir Compartments (Regions)
Lecture 1: Regions (Segments) Introduction
Lecture 2: Equilibration Region
Lecture 3: Modeling EQLNUM
Lecture 4: Fluid (PVT) Region
Lecture 5: Modeling PVTNUM
Chapter 14: Initialization Process
Lecture 1: Initialization Introduction
Lecture 2: Equilibration
Lecture 3: Initialization Process – 1
Lecture 4: Initialization Process – 2
Lecture 5: Initialization Process – 3
Lecture 6: Initialization Process – 4
Instructors
-
Ogwuche Joseph
Petroleum Engineer
Rating Distribution
- 1 stars: 2 votes
- 2 stars: 2 votes
- 3 stars: 13 votes
- 4 stars: 30 votes
- 5 stars: 82 votes
Frequently Asked Questions
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