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Reservoir Simulation

Rp 9.950.000
Stok Tersedia
Kategori 100+ Pelatihan Engineering & Migas Profesional 2026 | Sertifikat Resmi, Oil & Gas

3-day training
Instructor: Prof. Dr.-Ing. Bonar Tua Halomoan Marbun

Tentukan pilihan yang tersedia!

Reservoir Simulation

BACKGROUND

Production and operation teams cannot directly observe how conditions change within a reservoir during production. Instead, they depend on sophisticated simulation models that transform subsurface. Therefore, reservoir simulation serves as a cornerstone for understanding reservoir performance and optimizing recovery strategies. Integrating geoscience, production data, engineers can forecast future performance under various scenarios, identify operational bottlenecks, and design effective recovery schemes. Advances in gridding techniques, rock/fluid characterization, and model calibration have further elevated the accuracy and reliability of these predictions.

In recent years, the rise of data-driven modeling, machine learning, and advanced analytics has transformed how engineers approach simulation. These tools complement physics-based models by uncovering hidden patterns, enhancing predictive capabilities, and improving optimization in areas.  Those areas can be fracture design, water/gas injection management, and predictive maintenance. It will equip participants with practical skills and integrated workflows to maximize reservoir performance in today’s competitive energy landscape.

OBJECTIVES:

This Course will discuss the following topics:

  • Review of:
    – Buckley Leverett displacement
    – One dimensional water oil displacement
    – Model components, types, and modern gridding methods
    – Two-dimensional displacement
    – Grid orientation and refinement
    – Routine and special core analysis
    – Single phase up-scaling of geo-cellular model parameters
  • Apply the principles of reservoir engineering to numerical modelling
  • Set up, run, and analyse the results for single-well, pattern, and full-field models
  • Prepare fluid and rock property data in the manner required for simulation studies
  • Identify and eliminate causes of numerical problems
  • Perform a history match
  • Use the matched model to predict future performance under a variety of assumptions
  • Introduction to advanced analytical tools and techniques that includes data mining and machine learning algorithms along with means to access them easily over open-source platforms – Python and Google’s Tensor Flow.
  • Application of each of these tools to specific subsurface data and the successful implementation leading to optimization/decision making.
  •  Sweet spots/new acreage identification as well as likely optimum frac stages for unconventional production using existing reservoir data as well as public data.
  •  Application of artificial neural networks for a) predictive maintenance on surface facilities, b) identifying lithology by formation evaluation data and c) fluid characterization
  • Optimize water and/or gas injection operations in conventional fields by application of these advanced tools on production data collected as part of surveillance
  • Framework to integrate these advanced modelling tools with existing workflows such as reservoir simulation using case study to explain the same.

Course Outline

Fundamentals of Reservoir Simulation

  • Classical analysis Vs Reservoir simulation overview
  • Characterizing the reservoir
  • Benefits of reservoir simulation
  • Formulation of equations
  • Linearization & solution process
  • Minimum data requirements
  • Well calculations
  • General data requirements for reservoir simulation

Rock-Fluid Property Handling

  • Handling of rock properties (porosity, permeability, saturation)
  • Handling of rock-fluid properties (relative perm and capillary pressure)
  • Simulation grids
  • Local grid refinements
  • Fine grid simulations
  • Upscaling
  • Tips on single well studies
  • Tips on handling large simulation models
  • Grid orientation and numerical dispersion

Compositional and Specialized Simulation Techniques

• Simulation types (Black-oil, MBO, Compositional, others)
• Overview of compositional simulation
• Applications of compositional simulation
• Data requirements for compositional simulation
• Computation considerations

Fractured Reservoir Modeling

  • Types of fractured reservoirs
  • Dual porosity fundamentals
  • Fractured reservoir simulation
  • Simulation walk-through to build dual porosity/dual permeability models
  • DFN (Discrete Fractured Network) models

Practical Applications and Open-Source Software Practice

  • Overview of simulation process
  • Conducting a study
  • Experimental design applications in reservoir simulation
  • Assisted history matching

DELIVERY METHOD:

  • Tutorial presentation
  • In-class discussion
  • Group discussion & study case
  • Computer practice with open-source software (participant should bring own laptop)

About The Course Leader

Prof. Dr.-Ing. Bonar Tua Halomoan Marbun

Reservoir Simulation

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