Dilihat 958
Instructor by : Lela Widagdo
TARGETS After completing this course participants are expected to be able to:- Comprehend basic principles of calculation and conduct optimization when wells production operations, oil wells, gas and geothermal reservoir implemented, develop this production optimization implementation to improve wells and fields performance and production.
- Conduct simple diagnosis and comprehend settlement problems on production wells operation of, oil wells and gas and geothermal reservoir.
- Create a simple analysis of wells oil, gas and geothermal data, forecast performance and plan production operations development
- Conduct simple quantitative calculations entire acquisition data: tubing, flowline, chokes, perforation, Gravel-pack, sub-surface safety, wells valve, plan its development by considering capability from each well.
- Practice knowledge of production operations for settlement problems occur when cementation process, handling scale, sand, corrosion and damage of oil and gas wells.
- Understanding basic principles on design: cementation, workover, wells stimulation with acidizing and hydraulics rupture, planning workover, etc.
- Introduction
- Sandstone Reservoirs
- Geologic Factors Affecting Reservoir Properties in Sandstone
- Application of Geologic concepts in Specific Sandstone
- Carbonate Reservoirs
- Application of Geologic Concepts in Carbonate Reservoirs
- Introduction
- Hydrocarbon Properties of Oil and Gas
- Recommendations of Obtaining Good Test Data
- “Eyeball” Interpretation of Pressure Charts
- Introduction
- Cementing Materials
- Cement Additives
- Cement Bonding
- Flow Properties of Primary Cements
- Displacement Mechanics
- Cost of Primary Cementing
- Special Problem Situations-New Developments
- Primary Cementing Practices
- Factors Influencing Well Completion Design
- Conventional Tubular Configuration
- Unconventional Tubular Configurations
- Sizing Production Tubular
- Completion Interval
- Permanent Well Completions (PWC)
- Tubing less Completion
- Tubing Strings
- Steel Grades
- Tubing Connections
- Makeup of API Threaded connection
- Design of Tubing Strings
- High Strength Tubing
- Physical Properties of Steel
- Sensitivities of High Strength Tubing
- Tubing Inspection
- Tubing Handling Practices
- Equipment for Use With-Strength Tubing
- Tubing Running Practices
- API Publication List
- Packers and Subsurface Control Equipment
- Production Packers
- Subsurface Control Equipment
- Introduction
- Types of Perforators
- Evaluation of Perforator Performance
- Factors Affecting Gun Perforating Results
- Perforating in a Clean Fluid with Differential Pressure Into Well bore
- A Comparison between the GEO-VANN System and Other Perforating Methods in Wells Equipped with Packers
- Functions-Requirements-Selection Criteria
- Formation Damage Related to Solids
- Oil Fluids-Practical Application
- Conventional Water-Base Mud
- Oil Base or Invert-Emulsion Mud
- Foam
- Perforating Fluids
- Packer Fluids
- Well Killing
- Introduction
- Logging Device
- Application of Through-Tubing Production logging
- Field Examples of Production Logging Techniques
- Primary Cement Evaluation
- Problem Wells
- Problem Well Analysis Checklist
- Introduction
- Paraffin and Asphaltene Chemistry
- Deposition Mechanisms
- Removal of Wax Deposits
- Preventing or Decreasing Wax Deposition
- Design of Wax Control
- Introduction
- Theoretical Considerations
- Practical Considerations
- Special Squeeze Cementing Situations
- Planning a Squeeze Cement Job
- Normal Operational Procedures
- Other Operational Procedures
- Plug-Back Operations
- Special Cement Systems
- Introduction
- Reduction of Drag Force
- Mechanical Methods of Sand Control
- Practical Considerations in Gravel Packing
- Use of screen Without Gravel
- Resin Consolidation Methods
- Introduction
- Basic Causes of Damage
- Classification of Damage Mechanisms
- Reduced Absolute Permeability
- Increased Fluid Viscosity (Emulsion)
- Diagnosis of Formation Damage
- Characteristics of Surfactants
- Use and Action of Surfactant
- Formation Damage Susceptible to Surfactant Treatment
- Preventing or Removing Damage
- Well Stimulation With Surfactants
- Increasing Effectiveness of Rod Pumping
- Prevention of Well Damage
- Acids Used in Well Stimulation
- Acid Additives
- Carbonate Acidizing
- Acidizing Techniques for Caronat Formations
- Sandstone Acidizing
- Potential Safety Hazard in Acidizing
- Introduction
- Mechanics of Fracturing
- Production Increase from Fracturing
- Propping the Fracture
- Frac Fluids
- Frac Job Design
- Frac Job Evaluation Techniques
- Introduction
- Causes of Scale Deposition
- Prediction and Identification of Scale
- Scale Removal
- Scale Prevention
- The Corrosion Process
- Detection and Measurement of Corrosion
- Corrosion Control
- Conventional Production Rigs
- Non-Conventional Workovers System
- Concentric Tubing Workovers
- Reasons for Workover
- Workover to Alleviate Formation Damage
- Workover for Low Permeability Well
- Workover of Wells in Partially Pressure-Depleted Reservoirs
- Workover to Reduces Water Production in Oil and Gas Wells
- Workover to Reduces Gas Production in Oil Wells
- Workover for Sand Control
- Workover to Repair Mechanical Failure
- Workover to Change Zones or Reservoirs
- Workover to Multicomplete
- Workover to Increase Production in Well Producing High Viscosity (Low Gravity) Oil
- Workover Economics
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HUBUNGI KAMI
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Phone : 0811 2949 265
Email : marketing1@cakrabiwa.co.id
